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There are 2 authors associated with 129 papers found for author like Hynes M in database

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Hunter CC, Siebert KS, Downes DJ, Wong KH, Kreutzberger SD, Fraser JA, Clarke DF, Hynes MJ, Davis MA, Todd RBHunter CC, et al. (2014) Multiple nuclear localization signals mediate nuclear localization of the GATA transcription factor AreA. Eukaryot Cell 13(4):527-38
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Downes DJ, Davis MA, Wong KH, Kreutzberger SD, Hynes MJ, Todd RBDownes DJ, et al. (2014) Dual DNA binding and coactivator functions of Aspergillus nidulans TamA, a Zn(II)2Cys6 transcription factor. Mol Microbiol 92(6):1198-211
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Grundlinger M, Yasmin S, Lechner BE, Geley S, Schrettl M, Hynes M, Haas HGrundlinger M, et al. (2013) Fungal siderophore biosynthesis is partially localized in peroxisomes. Mol Microbiol 88(5):862-75
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Suzuki Y, Murray SL, Wong KH, Davis MA, Hynes MJSuzuki Y, et al. (2012) Reprogramming of carbon metabolism by the transcriptional activators AcuK and AcuM in Aspergillus nidulans. Mol Microbiol 84(5):942-64
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Bugeja HE, Hynes MJ, Andrianopoulos ABugeja HE, et al. (2012) AreA controls nitrogen source utilisation during both growth programs of the dimorphic fungus Penicillium marneffei. Fungal Biol 116(1):145-54
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Hynes MJ, Murray SL, Andrianopoulos A, Davis MAHynes MJ, et al. (2011) Role of carnitine acetyltransferases in acetyl coenzyme A metabolism in Aspergillus nidulans. Eukaryot Cell 10(4):547-55
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Reiser K, Davis MA, Hynes MJReiser K, et al. (2010) Aspergillus nidulans contains six possible fatty acyl-CoA synthetases with FaaB being the major synthetase for fatty acid degradation. Arch Microbiol 192(5):373-82
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Reiser K, Davis MA, Hynes MJReiser K, et al. (2010) AoxA is a major peroxisomal long chain fatty acyl-CoA oxidase required for beta-oxidation in A. nidulans. Curr Genet 56(2):139-50
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Murray SL, Hynes MJMurray SL and Hynes MJ (2010) Metabolic and developmental effects resulting from deletion of the citA gene encoding citrate synthase in Aspergillus nidulans. Eukaryot Cell 9(4):656-66
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Hynes MJ, Murray SL, Kahn FKHynes MJ, et al. (2010) Deletion of the RING-finger peroxin 2 gene in Aspergillus nidulans does not affect meiotic development. FEMS Microbiol Lett 306(1):67-71
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Hynes MJ, Murray SLHynes MJ and Murray SL (2010) ATP-citrate lyase is required for production of cytosolic acetyl coenzyme A and development in Aspergillus nidulans. Eukaryot Cell 9(7):1039-48
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Wong KH, Hynes MJ, Todd RB, Davis MAWong KH, et al. (2009) Deletion and overexpression of the Aspergillus nidulans GATA factor AreB reveals unexpected pleiotropy. Microbiology 155(Pt 12):3868-80
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Sprote P, Brakhage AA, Hynes MJSprote P, et al. (2009) Contribution of peroxisomes to penicillin biosynthesis in Aspergillus nidulans. Eukaryot Cell 8(3):421-3
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Makita T, Katsuyama Y, Tani S, Suzuki H, Kato N, Todd RB, Hynes MJ, Tsukagoshi N, Kato M, Kobayashi TMakita T, et al. (2009) Inducer-dependent nuclear localization of a Zn(II)(2)Cys(6) transcriptional activator, AmyR, in Aspergillus nidulans. Biosci Biotechnol Biochem 73(2):391-9
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Wong KH, Todd RB, Oakley BR, Oakley CE, Hynes MJ, Davis MAWong KH, et al. (2008) Sumoylation in Aspergillus nidulans: sumO inactivation, overexpression and live-cell imaging. Fungal Genet Biol 45(5):728-37
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Sprote P, Hynes MJ, Hortschansky P, Shelest E, Scharf DH, Wolke SM, Brakhage AASprote P, et al. (2008) Identification of the novel penicillin biosynthesis gene aatB of Aspergillus nidulans and its putative evolutionary relationship to this fungal secondary metabolism gene cluster. Mol Microbiol 70(2):445-61
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Hynes MJ, Murray SL, Khew GS, Davis MAHynes MJ, et al. (2008) Genetic analysis of the role of peroxisomes in the utilization of acetate and fatty acids in Aspergillus nidulans. Genetics 178(3):1355-69
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Wong KH, Hynes MJ, Todd RB, Davis MAWong KH, et al. (2007) Transcriptional control of nmrA by the bZIP transcription factor MeaB reveals a new level of nitrogen regulation in Aspergillus nidulans. Mol Microbiol 66(2):534-51
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Todd RB, Davis MA, Hynes MJTodd RB, et al. (2007) Genetic manipulation of Aspergillus nidulans: meiotic progeny for genetic analysis and strain construction. Nat Protoc 2(4):811-21
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Todd RB, Davis MA, Hynes MJTodd RB, et al. (2007) Genetic manipulation of Aspergillus nidulans: heterokaryons and diploids for dominance, complementation and haploidization analyses. Nat Protoc 2(4):822-30
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Hynes MJ, Szewczyk E, Murray SL, Suzuki Y, Davis MA, Sealy-Lewis HMHynes MJ, et al. (2007) Transcriptional control of gluconeogenesis in Aspergillus nidulans. Genetics 176(1):139-50
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Todd RB, Hynes MJ, Andrianopoulos ATodd RB, et al. (2006) The Aspergillus nidulans rcoA gene is required for veA-dependent sexual development. Genetics 174(3):1685-8
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Nayak T, Szewczyk E, Oakley CE, Osmani A, Ukil L, Murray SL, Hynes MJ, Osmani SA, Oakley BRNayak T, et al. (2006) A versatile and efficient gene-targeting system for Aspergillus nidulans. Genetics 172(3):1557-66
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Monahan BJ, Askin MC, Hynes MJ, Davis MAMonahan BJ, et al. (2006) Differential expression of Aspergillus nidulans ammonium permease genes is regulated by GATA transcription factor AreA. Eukaryot Cell 5(2):226-37
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Hynes MJ, Murray SL, Duncan A, Khew GS, Davis MAHynes MJ, et al. (2006) Regulatory genes controlling fatty acid catabolism and peroxisomal functions in the filamentous fungus Aspergillus nidulans. Eukaryot Cell 5(5):794-805
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Todd RB, Fraser JA, Wong KH, Davis MA, Hynes MJTodd RB, et al. (2005) Nuclear accumulation of the GATA factor AreA in response to complete nitrogen starvation by regulation of nuclear export. Eukaryot Cell 4(10):1646-53
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Galagan JE, Calvo SE, Cuomo C, Ma LJ, Wortman JR, Batzoglou S, Lee SI, Basturkmen M, Spevak CC, Clutterbuck J, Kapitonov V, Jurka J, Scazzocchio C, Farman M, Butler J, Purcell S, Harris S, Braus GH, Draht O, Busch S, D'Enfert C, Bouchier C, Goldman GH, Bell-Pedersen D, Griffiths-Jones S, Doonan JH, Yu J, Vienken K, Pain A, Freitag M, Selker EU, Archer DB, Penalva MA, Oakley BR, Momany M, Tanaka T, Kumagai T, Asai K, Machida M, Nierman WC, Denning DW, Caddick M, Hynes M, Paoletti M, Fischer R, Miller B, Dyer P, Sachs MS, Osmani SA, Birren BWGalagan JE, et al. (2005) Sequencing of Aspergillus nidulans and comparative analysis with A. fumigatus and A. oryzae. Nature 438(7071):1105-15
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Davis MA, Askin MC, Hynes MJDavis MA, et al. (2005) Amino acid catabolism by an areA-regulated gene encoding an L-amino acid oxidase with broad substrate specificity in Aspergillus nidulans. Appl Environ Microbiol 71(7):3551-5
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Polotnianka R, Monahan BJ, Hynes MJ, Davis MAPolotnianka R, et al. (2004) TamA interacts with LeuB, the homologue of Saccharomyces cerevisiae Leu3p, to regulate gdhA expression in Aspergillus nidulans. Mol Genet Genomics 272(4):452-9
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Todd RB, Greenhalgh JR, Hynes MJ, Andrianopoulos ATodd RB, et al. (2003) TupA, the Penicillium marneffei Tup1p homologue, represses both yeast and spore development. Mol Microbiol 48(1):85-94
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Zuber S, Hynes MJ, Andrianopoulos AZuber S, et al. (2002) G-protein signaling mediates asexual development at 25 degrees C but has no effect on yeast-like growth at 37 degrees C in the dimorphic fungus Penicillium mameffei. Eukaryot Cell 1(3):440-7
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Monahan BJ, Unkles SE, Tsing I T, Kinghorn JR, Hynes MJ, Davis MAMonahan BJ, et al. (2002) Mutation and functional analysis of the Aspergillus nidulans ammonium permease MeaA and evidence for interaction with itself and MepA. Fungal Genet Biol 36(1):35-46
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Monahan BJ, Fraser JA, Hynes MJ, Davis MAMonahan BJ, et al. (2002) Isolation and characterization of two ammonium permease genes, meaA and mepA, from Aspergillus nidulans. Eukaryot Cell 1(1):85-94
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Hynes MJ, Draht OW, Davis MAHynes MJ, et al. (2002) Regulation of the acuF gene, encoding phosphoenolpyruvate carboxykinase in the filamentous fungus Aspergillus nidulans. J Bacteriol 184(1):183-90
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Fraser JA, Davis MA, Hynes MJFraser JA, et al. (2002) The genes gmdA, encoding an amidase, and bzuA, encoding a cytochrome P450, are required for benzamide utilization in Aspergillus nidulans. Fungal Genet Biol 35(2):135-46
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Fraser JA, Davis MA, Hynes MJFraser JA, et al. (2002) A gene from Aspergillus nidulans with similarity to URE2 of Saccharomyces cerevisiae encodes a glutathione S-transferase which contributes to heavy metal and xenobiotic resistance. Appl Environ Microbiol 68(6):2802-8
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Borneman AR, Hynes MJ, Andrianopoulos ABorneman AR, et al. (2002) A basic helix-loop-helix protein with similarity to the fungal morphological regulators, Phd1p, Efg1p and StuA, controls conidiation but not dimorphic growth in Penicillium marneffei. Mol Microbiol 44(3):621-31
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Tanaka A, Kamei K, Tanoue S, Papagiannopoulos P, Steidl S, Brakhage AA, Davis MA, Hynes MJ, Kato M, Kobayashi T, Tsukagoshi NTanaka A, et al. (2001) AoHapB, AoHapC and AoHapE, subunits of the Aspergillus oryzae CCAAT-binding complex, are functionally interchangeable with the corresponding subunits in Aspergillus nidulans. Curr Genet 39(3):175-82
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Szewczyk E, Andrianopoulos A, Davis MA, Hynes MJSzewczyk E, et al. (2001) A single gene produces mitochondrial, cytoplasmic, and peroxisomal NADP-dependent isocitrate dehydrogenase in Aspergillus nidulans. J Biol Chem 276(40):37722-9
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Steidl S, Hynes MJ, Brakhage AASteidl S, et al. (2001) The Aspergillus nidulans multimeric CCAAT binding complex AnCF is negatively autoregulated via its hapB subunit gene. J Mol Biol 306(4):643-53
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Small AJ, Todd RB, Zanker MC, Delimitrou S, Hynes MJ, Davis MASmall AJ, et al. (2001) Functional analysis of TamA, a coactivator of nitrogen-regulated gene expression in Aspergillus nidulans. Mol Genet Genomics 265(4):636-46
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Margelis S, D'Souza C, Small AJ, Hynes MJ, Adams TH, Davis MAMargelis S, et al. (2001) Role of glutamine synthetase in nitrogen metabolite repression in Aspergillus nidulans. J Bacteriol 183(20):5826-33
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Fraser JA, Davis MA, Hynes MJFraser JA, et al. (2001) The formamidase gene of Aspergillus nidulans: regulation by nitrogen metabolite repression and transcriptional interference by an overlapping upstream gene. Genetics 157(1):119-31
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Boyce KJ, Hynes MJ, Andrianopoulos ABoyce KJ, et al. (2001) The CDC42 homolog of the dimorphic fungus Penicillium marneffei is required for correct cell polarization during growth but not development. J Bacteriol 183(11):3447-57
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Borneman AR, Hynes MJ, Andrianopoulos ABorneman AR, et al. (2001) An STE12 homolog from the asexual, dimorphic fungus Penicillium marneffei complements the defect in sexual development of an Aspergillus nidulans steA mutant. Genetics 157(3):1003-14
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Tanaka A, Kato M, Hashimoto H, Kamei K, Naruse F, Papagiannopoulos P, Davis MA, Hynes MJ, Kobayashi T, Tsukagoshi NTanaka A, et al. (2000) An Aspergillus oryzae CCAAT-binding protein, AoCP, is involved in the high-level expression of the Taka-amylase A gene. Curr Genet 37(6):380-7
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Borneman AR, Hynes MJ, Andrianopoulos ABorneman AR, et al. (2000) The abaA homologue of Penicillium marneffei participates in two developmental programmes: conidiation and dimorphic growth. Mol Microbiol 38(5):1034-47
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Steidl S, Papagiannopoulos P, Litzka O, Andrianopoulos A, Davis MA, Brakhage AA, Hynes MJSteidl S, et al. (1999) AnCF, the CCAAT binding complex of Aspergillus nidulans, contains products of the hapB, hapC, and hapE genes and is required for activation by the pathway-specific regulatory gene amdR. Mol Cell Biol 19(1):99-106
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Small AJ, Hynes MJ, Davis MASmall AJ, et al. (1999) The TamA protein fused to a DNA-binding domain can recruit AreA, the major nitrogen regulatory protein, to activate gene expression in Aspergillus nidulans. Genetics 153(1):95-105
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Narendja FM, Davis MA, Hynes MJNarendja FM, et al. (1999) AnCF, the CCAAT binding complex of Aspergillus nidulans, is essential for the formation of a DNase I-hypersensitive site in the 5' region of the amdS gene. Mol Cell Biol 19(10):6523-31
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Macheda ML, Hynes MJ, Davis MAMacheda ML, et al. (1999) The Aspergillus nidulans gltA gene encoding glutamate synthase is required for ammonium assimilation in the absence of NADP-glutamate dehydrogenase. Curr Genet 34(6):467-71
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Brakhage AA, Andrianopoulos A, Kato M, Steidl S, Davis MA, Tsukagoshi N, Hynes MJBrakhage AA, et al. (1999) HAP-Like CCAAT-binding complexes in filamentous fungi: implications for biotechnology. Fungal Genet Biol 27(2-3):243-52
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Todd RB, Andrianopoulos A, Davis MA, Hynes MJTodd RB, et al. (1998) FacB, the Aspergillus nidulans activator of acetate utilization genes, binds dissimilar DNA sequences. EMBO J 17(7):2042-54
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Stemple CJ, Davis MA, Hynes MJStemple CJ, et al. (1998) The facC gene of Aspergillus nidulans encodes an acetate-inducible carnitine acetyltransferase. J Bacteriol 180(23):6242-51
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Litzka O, Papagiannopolous P, Davis MA, Hynes MJ, Brakhage AALitzka O, et al. (1998) The penicillin regulator PENR1 of Aspergillus nidulans is a HAP-like transcriptional complex. Eur J Biochem 251(3):758-67
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Kato M, Aoyama A, Naruse F, Tateyama Y, Hayashi K, Miyazaki M, Papagiannopoulos P, Davis MA, Hynes MJ, Kobayashi T, Tsukagoshi NKato M, et al. (1998) The Aspergillus nidulans CCAAT-binding factor AnCP/AnCF is a heteromeric protein analogous to the HAP complex of Saccharomyces cerevisiae. Mol Gen Genet 257(4):404-11
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Christensen T, Hynes MJ, Davis MAChristensen T, et al. (1998) Role of the regulatory gene areA of Aspergillus oryzae in nitrogen metabolism. Appl Environ Microbiol 64(9):3232-7
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Andrianopoulos A, Kourambas S, Sharp JA, Davis MA, Hynes MJAndrianopoulos A, et al. (1998) Characterization of the Aspergillus nidulans nmrA gene involved in nitrogen metabolite repression. J Bacteriol 180(7):1973-7
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Todd RB, Murphy RL, Martin HM, Sharp JA, Davis MA, Katz ME, Hynes MJTodd RB, et al. (1997) The acetate regulatory gene facB of Aspergillus nidulans encodes a Zn(II)2Cys6 transcriptional activator. Mol Gen Genet 254(5):495-504
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Todd RB, Kelly JM, Davis MA, Hynes MJTodd RB, et al. (1997) Molecular characterization of mutants of the acetate regulatory gene facB of Aspergillus nidulans. Fungal Genet Biol 22(2):92-102
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Shroff RA, O'Connor SM, Hynes MJ, Lockington RA, Kelly JMShroff RA, et al. (1997) Null alleles of creA, the regulator of carbon catabolite repression in Aspergillus nidulans. Fungal Genet Biol 22(1):28-38
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Murphy RL, Andrianopoulos A, Davis MA, Hynes MJMurphy RL, et al. (1997) Identification of amdX, a new Cys-2-His-2 (C2H2) zinc-finger gene involved in the regulation of the amdS gene of Aspergillus nidulans. Mol Microbiol 23(3):591-602
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Straffon MJ, Hynes MJ, Davis MAStraffon MJ, et al. (1996) Characterization of the ugatA gene of Ustilago maydis, isolated by homology to the gatA gene of Aspergillus nidulans. Curr Genet 29(4):360-9
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Papagiannopoulos P, Andrianopoulos A, Sharp JA, Davis MA, Hynes MJPapagiannopoulos P, et al. (1996) The hapC gene of Aspergillus nidulans is involved in the expression of CCAAT-containing promoters. Mol Gen Genet 251(4):412-21
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Davis MA, Small AJ, Kourambas S, Hynes MJDavis MA, et al. (1996) The tamA gene of Aspergillus nidulans contains a putative zinc cluster motif which is not required for gene function. J Bacteriol 178(11):3406-9
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Andrianopoulos A, Brons J, Davis MA, Hynes MJAndrianopoulos A, et al. (1996) The amdA regulatory gene of Aspergillus nidulans: characterization of gain-of-function mutations and identification of binding sites for the gene product. Fungal Genet Biol 21(1):50-63
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Lints R, Davis MA, Hynes MJLints R, et al. (1995) The positively acting amdA gene of Aspergillus nidulans encodes a protein with two C2H2 zinc-finger motifs. Mol Microbiol 15(5):965-75
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Bonnefoy N, Copsey J, Hynes MJ, Davis MABonnefoy N, et al. (1995) Yeast proteins can activate expression through regulatory sequences of the amdS gene of Aspergillus nidulans. Mol Gen Genet 246(2):223-7
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Hynes MJHynes MJ (1994) Regulatory circuits of the amdS gene of Aspergillus nidulans. Antonie Van Leeuwenhoek 65(3):179-82
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Hynes MJHynes MJ (1994) Regulation of acetamide utilization. Prog Ind Microbiol 29:279-97
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Davis MA, Kelly JM, Hynes MJDavis MA, et al. (1993) Fungal catabolic gene regulation: molecular genetic analysis of the amdS gene of Aspergillus nidulans. Genetica 90(2-3):133-45
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Wang XW, Hynes MJ, Davis MAWang XW, et al. (1992) Structural and functional analysis of the amdR regulatory gene of Aspergillus oryzae. Gene 122(1):147-54
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Saleeba JA, Cobbett CS, Hynes MJSaleeba JA, et al. (1992) Characterization of the amdA-regulated aciA gene of Aspergillus nidulans. Mol Gen Genet 235(2-3):349-58
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Richardson IB, Katz ME, Hynes MJRichardson IB, et al. (1992) Molecular characterization of the lam locus and sequences involved in regulation by the AmdR protein of Aspergillus nidulans. Mol Cell Biol 12(1):337-46
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Parsons LM, Davis MA, Hynes MJParsons LM, et al. (1992) Identification of functional regions of the positively acting regulatory gene amdR from Aspergillus nidulans. Mol Microbiol 6(20):2999-3007
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Littlejohn TG, Hynes MJLittlejohn TG and Hynes MJ (1992) Analysis of the site of action of the amdR product for regulation of the amdS gene of Aspergillus nidulans. Mol Gen Genet 235(1):81-8
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van Heeswijck R, Hynes MJvan Heeswijck R and Hynes MJ (1991) The amdR product and a CCAAT-binding factor bind to adjacent, possibly overlapping DNA sequences in the promoter region of the Aspergillus nidulans amdS gene. Nucleic Acids Res 19(10):2655-60
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Sandeman RA, Hynes MJ, Fincham JR, Connerton IFSandeman RA, et al. (1991) Molecular organisation of the malate synthase genes of Aspergillus nidulans and Neurospora crassa. Mol Gen Genet 228(3):445-52
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van Heeswijck R, Ristevski S, Hynes M, Hoogenraad Nvan Heeswijck R, et al. (1990) Complementation of the Aspergillus nidulans arg B1 mutation by ornithine transcarbamylase cDNA from rat liver. Biochem Biophys Res Commun 168(3):1280-4
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Turnbull IF, Smith DR, Sharp PJ, Cobon GS, Hynes MJTurnbull IF, et al. (1990) Expression and secretion in Aspergillus nidulans and Aspergillus niger of a cell surface glycoprotein from the cattle tick, Boophilus microplus, by using the fungal amdS promoter system. Appl Environ Microbiol 56(9):2847-52
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Katz ME, Saleeba JA, Sapats SI, Hynes MJKatz ME, et al. (1990) A mutation affecting amdS expression in Aspergillus nidulans contains a triplication of a cis-acting regulatory sequence. Mol Gen Genet 220(3):373-6
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Connerton IF, Fincham JR, Sandeman RA, Hynes MJConnerton IF, et al. (1990) Comparison and cross-species expression of the acetyl-CoA synthetase genes of the Ascomycete fungi, Aspergillus nidulans and Neurospora crassa. Mol Microbiol 4(3):451-60
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Andrianopoulos A, Hynes MJAndrianopoulos A and Hynes MJ (1990) Sequence and functional analysis of the positively acting regulatory gene amdR from Aspergillus nidulans. Mol Cell Biol 10(6):3194-203
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Sandeman RA, Hynes MJSandeman RA and Hynes MJ (1989) Isolation of the facA (acetyl-coenzyme A synthetase) and acuE (malate synthase) genes of Aspergillus nidulans. Mol Gen Genet 218(1):87-92
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Richardson IB, Hurley SK, Hynes MJRichardson IB, et al. (1989) Cloning and molecular characterisation of the amdR controlled gatA gene of Aspergillus nidulans. Mol Gen Genet 217(1):118-25
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Katz ME, Hynes MJKatz ME and Hynes MJ (1989) Isolation and analysis of the acetate regulatory gene, facB, from Aspergillus nidulans. Mol Cell Biol 9(12):5696-701
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Katz ME, Hynes MJKatz ME and Hynes MJ (1989) Gene function identified by interspecific transformation. Gene 78(1):167-71
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Katz ME, Hynes MJKatz ME and Hynes MJ (1989) Characterization of the amdR-controlled lamA and lamB genes of Aspergillus nidulans. Genetics 122(2):331-9
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Davis MA, Hynes MJDavis MA and Hynes MJ (1989) Regulatory genes in Aspergillus nidulans. Trends Genet 5(1):14-9
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Hynes MJ, Corrick CM, Kelly JM, Littlejohn TGHynes MJ, et al. (1988) Identification of the sites of action for regulatory genes controlling the amdS gene of Aspergillus nidulans. Mol Cell Biol 8(6):2589-96
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Davis MA, Cobbett CS, Hynes MJDavis MA, et al. (1988) An amdS-lacZ fusion for studying gene regulation in Aspergillus. Gene 63(2):199-212
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Andrianopoulos A, Hynes MJAndrianopoulos A and Hynes MJ (1988) Cloning and analysis of the positively acting regulatory gene amdR from Aspergillus nidulans. Mol Cell Biol 8(8):3532-41
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Kelly JM, Hynes MJKelly JM and Hynes MJ (1987) Multiple copies of the amdS gene of Aspergillus nidulans cause titration of trans-acting regulatory proteins. Curr Genet 12(1):21-31
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Davis MA, Hynes MJDavis MA and Hynes MJ (1987) Complementation of areA- regulatory gene mutations of Aspergillus nidulans by the heterologous regulatory gene nit-2 of Neurospora crassa. Proc Natl Acad Sci U S A 84(11):3753-7
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Corrick CM, Twomey AP, Hynes MJCorrick CM, et al. (1987) The nucleotide sequence of the amdS gene of Aspergillus nidulans and the molecular characterization of 5' mutations. Gene 53(1):63-71
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Hynes MJ, Davis MAHynes MJ and Davis MA (1986) The amdS gene of Aspergillus nidulans: control by multiple regulatory signals. Bioessays 5(3):123-8
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Kelly JM, Hynes MJKelly JM and Hynes MJ (1985) Transformation of Aspergillus niger by the amdS gene of Aspergillus nidulans. EMBO J 4(2):475-9
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Atkinson PW, King JA, Hynes MJAtkinson PW, et al. (1985) Identification of the aciA gene controlled by the amdA regulatory gene in Aspergillus nidulans. Curr Genet 10(2):133-8
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Pateman JA, Doy CH, Olsen JE, Norris U, Creaser EH, Hynes MPateman JA, et al. (1983) Regulation of alcohol dehydrogenase (ADH) and aldehyde dehydrogenase (AldDH) in Aspergillus nidulans. Proc R Soc Lond B Biol Sci 217(1208):243-64
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Hynes MJ, Corrick CM, King JAHynes MJ, et al. (1983) Isolation of genomic clones containing the amdS gene of Aspergillus nidulans and their use in the analysis of structural and regulatory mutations. Mol Cell Biol 3(8):1430-9
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Polkinghorne MA, Hynes MJPolkinghorne MA and Hynes MJ (1982) L-histidine utilization in Aspergillus nidulans. J Bacteriol 149(3):931-40
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Kelly JM, Hynes MJKelly JM and Hynes MJ (1982) The regulation of NADP-linked isocitrate dehydrogenase in Aspergillus nidulans. J Gen Microbiol 128(1):23-8
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Hynes MJHynes MJ (1982) A cis-dominant mutation in aspergillus nidulans affecting the expression of the amdS gene in the presence of mutations in the unlinked gene, amdA. Genetics 102(2):139-47
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Kelly JM, Hynes MJKelly JM and Hynes MJ (1981) The regulation of phosphoenolpyruvate carboxykinase and the NADP-linked malic enzyme in Aspergillus nidulans. J Gen Microbiol 123(2):371-5
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Hynes MJHynes MJ (1980) A mutation, adjacent to gene amdS, defining the site of action of positive-control gene amdR in Aspergillus nidulans. J Bacteriol 142(2):400-6
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Hynes MJHynes MJ (1979) Fine-structure mapping of the acetamidase structural gene and its controlling region in Aspergillus nidulans. Genetics 91(3):381-92
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Hynes MJHynes MJ (1978) Multiple independent control mechanisms affecting the acetamidase of Aspergillus nidulans. Mol Gen Genet 161(1):59-65
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Hynes MJHynes MJ (1978) An "up-promotor" mutation affecting the acetamidase of Aspergillus nidulans. Mol Gen Genet 166(1):31-6
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Kelly JM, Hynes MJKelly JM and Hynes MJ (1977) Increased and decreased sensitivity to carbon catabolite repression of enzymes of acetate metabolism in mutants of Aspergillus nidulans. Mol Gen Genet 156(1):87-92
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Hynes MJ, Kelly JMHynes MJ and Kelly JM (1977) Pleiotropic mutants of Aspergillus nidulans altered in carbon metabolism. Mol Gen Genet 150(2):193-204
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Hynes MJHynes MJ (1977) Induction of the acetamidase of Aspergillus nidulans by acetate metabolism. J Bacteriol 131(3):770-5
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Polya GM, Brownlee AG, Hynes MJPolya GM, et al. (1975) Enzymology and genetic regulation of a cyclic nucleotide-binding phosphodiesterase-phosphomonoesterase from Aspergillus nidulans. J Bacteriol 124(2):693-703
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Polkinghorne M, Hynes MJPolkinghorne M and Hynes MJ (1975) Mutants affecting histidine utilization in Aspergillus nidulans. Genet Res 25(2):119-35
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Polkinghorne M, Hynes MJPolkinghorne M and Hynes MJ (1975) Effect of L-histidine on the catabolism of nitrogenous compounds in Aspergillus nidulans. J Gen Microbiol 87(1):185-7
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Hynes MJHynes MJ (1975) Studies on the role of the areA gene in the regulation of nitrogen catabolism in Aspergillus nidulans. Aust J Biol Sci 28(3):301-13
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Hynes MJHynes MJ (1975) Amide utilization in Aspergillus nidulans: evidence for a third amidase enzyme. J Gen Microbiol 91(1):99-109
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Hynes MJHynes MJ (1975) A cis-dominant regulatory mutation affecting enzyme induction in the eukaryote Aspergillus nidulans. Nature 253(5488):210-2
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Hynes MJHynes MJ (1974) The effects of carbon source on glutamate dehydrogenase activities in Aspergillus nidulans. J Gen Microbiol 81(1):165-70
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Hynes MJHynes MJ (1974) Repression of enzymes of nitrogen catabolism by methylammonium and caesium chloride in strains of Aspergillus nidulans insensitive to ammonium repression. Mol Gen Genet 132(2):147-52
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Hynes MJHynes MJ (1974) Effects of ammonium, L-glutamate, and L-glutamine on nitrogen catabolism in Aspergillus nidulans. J Bacteriol 120(3):1116-23
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Hynes MJHynes MJ (1973) The effect of lack of a carbon source on nitrate-reductase activity in Aspergillus nidulans. J Gen Microbiol 79(1):155-7
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Hynes MJHynes MJ (1973) Pleiotropic mutants affecting the control of nitrogen metabolism in Aspergillus nidulans. Mol Gen Genet 125(2):99-107
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Hynes MJHynes MJ (1973) Alterations in the control of glutamate uptake in mutants of Aspergillus nidulans. Biochem Biophys Res Commun 54(2):685-9
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Dunsmuir P, Hynes MJDunsmuir P and Hynes MJ (1973) Temperature sensitive mutants affecting the activity and regulation of the acetamidase of Aspergillus nidulans. Mol Gen Genet 123(4):333-46
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Hynes MJHynes MJ (1972) Mutants with altered glucose repression of amidase enzymes in Aspergillus nidulans. J Bacteriol 111(3):717-22
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Hynes MJ, Pateman JAHynes MJ and Pateman JA (1970) The use of amides as nitrogen sources by Aspergillus nidulans. J Gen Microbiol 63(3):317-24
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Hynes MJ, PATEMAN JAHynes MJ and Pateman JA (1970) The genetic analysis of regulation of amidase synthesis in Aspergillus nidulans. II. Mutants resistant to fluoroacetamide. Mol Gen Genet 108(2):107-16
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Hynes MJ, PATEMAN JAHynes MJ and Pateman JA (1970) The genetic analysis of regulation of amidase synthesis in Aspergillus nidulans. I. Mutants able to utilize acrylamide. Mol Gen Genet 108(2):97-106
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Hynes MJHynes MJ (1970) Induction and repression of amidase enzymes in Aspergillus nidulans. J Bacteriol 103(2):482-7
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