AspGD Curated Papers

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There are 2 authors associated with 65 papers found for author like Espeso E in database

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Feng X, Vellaisamy R, Pandit SS, Prieto A, Espeso EA, Calvo AMFeng X, et al. (2017) cpsA regulates mycotoxin production, morphogenesis and cell wall biosynthesis in the fungus Aspergillus nidulans. Mol Microbiol 105(1):1-24
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Sebastian V, Manoli MT, Perez DI, Gil C, Mellado E, Martinez A, Espeso EA, Campillo NESebastian-Perez V, et al. (2016) New applications for known drugs: Human glycogen synthase kinase 3 inhibitors as modulators of Aspergillus fumigatus growth. Eur J Med Chem 116:281-289
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Ries LN, Beattie SR, Espeso EA, Cramer RA, Goldman GHRies LN, et al. (2016) Diverse Regulation of the CreA Carbon Catabolite Repressor in Aspergillus nidulans. Genetics 203(1):335-52
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Mellado L, Arst HN Jr, Espeso EAMellado L, et al. (2016) Proteolytic activation of both components of the cation stress-responsive Slt pathway in Aspergillus nidulans. Mol Biol Cell 27(16):2598-612
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Dubey AK, Barad S, Luria N, Kumar D, Espeso EA, Prusky DBDubey AK, et al. (2016) Cation-Stress-Responsive Transcription Factors SltA and CrzA Regulate Morphogenetic Processes and Pathogenicity of Colletotrichum gloeosporioides. PLoS One 11(12):e0168561
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Bi F, Barad S, Ment D, Luria N, Dubey A, Casado V, Glam N, Minguez JD, Espeso E, Fluhr R, Prusky DBi F, et al. (2016) Carbon regulation of environmental pH by secreted small molecules that modulate pathogenicity in phytopathogenic fungi. Mol Plant Pathol 17(8):1178-95
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Oiartzabal-Arano E, Garzia A, Gorostidi A, Ugalde U, Espeso EA, Etxebeste OOiartzabal-Arano E, et al. (2015) Beyond asexual development: modifications in the gene expression profile caused by the absence of the Aspergillus nidulans transcription factor FlbB. Genetics 199(4):1127-42
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Mellado L, Calcagno-Pizarelli AM, Lockington RA, Cortese M, Kelly JM, Arst HN, Espeso EAMellado L, et al. (2015) A second component of the SltA-dependent cation tolerance pathway in Aspergillus nidulans. Fungal Genet Biol 82:116-28
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Herrero-Garcia E, Perez-de-Nanclares-Arregi E, Cortese MS, Markina-Inarrairaegui A, Oiartzabal-Arano E, Etxebeste O, Ugalde U, Espeso EAHerrero-Garcia E, et al. (2015) Tip-to-nucleus migration dynamics of the asexual development regulator FlbB in vegetative cells. Mol Microbiol 98(4):607-24
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Ghassemi S, Lichius A, Bidard F, Lemoine S, Rossignol MN, Herold S, Seidl-Seiboth V, Seiboth B, Espeso EA, Margeot A, Kubicek CPGhassemi S, et al. (2015) The ss-importin KAP8 (Pse1/Kap121) is required for nuclear import of the cellulase transcriptional regulator XYR1, asexual sporulation and stress resistance in Trichoderma reesei. Mol Microbiol 96(2):405-18
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Bussink HJ, Bignell EM, Munera-Huertas T, Lucena-Agell D, Scazzocchio C, Espeso EA, Bertuzzi M, Rudnicka J, Negrete-Urtasun S, Penas-Parilla MM, Rainbow L, Penalva MA, Arst HN Jr, Tilburn JBussink HJ, et al. (2015) Refining the pH response in Aspergillus nidulans: a modulatory triad involving PacX, a novel zinc binuclear cluster protein. Mol Microbiol 98(6):1051-72
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Bertuzzi M, Schrettl M, Alcazar-Fuoli L, Cairns TC, Munoz A, Walker LA, Herbst S, Safari M, Cheverton AM, Chen D, Liu H, Saijo S, Fedorova ND, Armstrong-James D, Munro CA, Read ND, Filler SG, Espeso EA, Nierman WC, Haas H, Bignell EMBertuzzi M, et al. (2015) Correction: The pH-Responsive PacC Transcription Factor of Aspergillus fumigatus Governs Epithelial Entry and Tissue Invasion during Pulmonary Aspergillosis. PLoS Pathog 11(6):e1004943
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Baeza-Montanez L, Gold SE, Espeso E, Garcia-Pedrajas MDBaeza-Montanez L, et al. (2015) Conserved and Distinct Functions of the "Stunted" (StuA)-Homolog Ust1 During Cell Differentiation in the Corn Smut Fungus Ustilago maydis. Mol Plant Microbe Interact 28(1):86-102
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Liu W, Mellado L, Espeso EA, Sealy-Lewis HMLiu W, et al. (2014) In Aspergillus nidulans the suppressors suaA and suaC code for release factors eRF1 and eRF3 and suaD codes for a glutamine tRNA. G3 (Bethesda) 4(6):1047-57
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Bertuzzi M, Schrettl M, Alcazar-Fuoli L, Cairns TC, Munoz A, Walker LA, Herbst S, Safari M, Cheverton AM, Chen D, Liu H, Saijo S, Fedorova ND, Armstrong-James D, Munro CA, Read ND, Filler SG, Espeso EA, Nierman WC, Haas H, Bignell EMBertuzzi M, et al. (2014) The pH-responsive PacC transcription factor of Aspergillus fumigatus governs epithelial entry and tissue invasion during pulmonary aspergillosis. PLoS Pathog 10(10):e1004413
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Shantappa S, Dhingra S, Hernandez-Ortiz P, Espeso EA, Calvo AMShantappa S, et al. (2013) Role of the zinc finger transcription factor SltA in morphogenesis and sterigmatocystin biosynthesis in the fungus Aspergillus nidulans. PLoS One 8(7):e68492
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Markina-Inarrairaegui A, Pantazopoulou A, Espeso EA, Penalva MAMarkina-Inarrairaegui A, et al. (2013) The Aspergillus nidulans peripheral ER: disorganization by ER stress and persistence during mitosis. PLoS One 8(6):e67154
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Hernandez-Ortiz P, Espeso EAHernandez-Ortiz P and Espeso EA (2013) Phospho-regulation and nucleocytoplasmic trafficking of CrzA in response to calcium and alkaline-pH stress in Aspergillus nidulans. Mol Microbiol 89(3):532-51
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Garzia A, Etxebeste O, Rodriguez-Romero J, Fischer R, Espeso EA, Ugalde UGarzia A, et al. (2013) Transcriptional changes in the transition from vegetative cells to asexual development in the model fungus Aspergillus nidulans. Eukaryot Cell 12(2):311-21
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Etxebeste O, Villarino M, Markina-Inarrairaegui A, Araujo-Bazan L, Espeso EAEtxebeste O, et al. (2013) Cytoplasmic dynamics of the general nuclear import machinery in apically growing syncytial cells. PLoS One 8(12):e85076
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Etxebeste O, Herrero-Garcia E, Cortese MS, Garzia A, Oiartzabal-Arano E, de Los Rios V, Ugalde U, Espeso EAEtxebeste O, et al. (2012) GmcA is a putative glucose-methanol-choline oxidoreductase required for the induction of asexual development in Aspergillus nidulans. PLoS One 7(7):e40292
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Markina-Inarrairaegui A, Etxebeste O, Herrero-Garcia E, Araujo-Baza L, Fernandez-Martinez J, Flores JA, Osmani SA, Espeso EAMarkina-Inarrairaegui A, et al. (2011) Nuclear transporters in a multinucleated organism: functional and localization analyses in Aspergillus nidulans. Mol Biol Cell 22(20):3874-86
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Herrero-Garcia E, Garzia A, Cordobes S, Espeso EA, Ugalde UHerrero-Garcia E, et al. (2011) 8-Carbon oxylipins inhibit germination and growth, and stimulate aerial conidiation in Aspergillus nidulans. Fungal Biol 115(4-5):393-400
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Cortese MS, Etxebeste O, Garzia A, Espeso EA, Ugalde UCortese MS, et al. (2011) Elucidation of functional markers from Aspergillus nidulans developmental regulator FlbB and their phylogenetic distribution. PLoS One 6(3):e17505
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Soriani FM, Malavazi I, Savoldi M, Espeso E, Dinamarco TM, Bernardes LA, Ferreira ME, Goldman MH, Goldman GHSoriani FM, et al. (2010) Identification of possible targets of the Aspergillus fumigatus CRZ1 homologue, CrzA. BMC Microbiol 10:12
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Kwon NJ, Garzia A, Espeso EA, Ugalde U, Yu JHKwon NJ, et al. (2010) FlbC is a putative nuclear C2H2 transcription factor regulating development in Aspergillus nidulans. Mol Microbiol 77(5):1203-19
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Garzia A, Etxebeste O, Herrero-Garcia E, Ugalde U, Espeso EAGarzia A, et al. (2010) The concerted action of bZip and cMyb transcription factors FlbB and FlbD induces brlA expression and asexual development in Aspergillus nidulans. Mol Microbiol 75(5):1314-24
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Findon H, Calcagno-Pizarelli AM, Martinez JL, Spielvogel A, Markina-Inarrairaegui A, Indrakumar T, Ramos J, Penalva MA, Espeso EA, Arst HN JrFindon H, et al. (2010) Analysis of a novel calcium auxotrophy in Aspergillus nidulans. Fungal Genet Biol 47(7):647-55
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Etxebeste O, Garzia A, Espeso EA, Ugalde UEtxebeste O, et al. (2010) Aspergillus nidulans asexual development: making the most of cellular modules. Trends Microbiol 18(12):569-76
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Atoui A, Kastner C, Larey CM, Thokala R, Etxebeste O, Espeso EA, Fischer R, Calvo AMAtoui A, et al. (2010) Cross-talk between light and glucose regulation controls toxin production and morphogenesis in Aspergillus nidulans. Fungal Genet Biol 47(12):962-72
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Harris SD, Turner G, Meyer V, Espeso EA, Specht T, Takeshita N, Helmstedt KHarris SD, et al. (2009) Morphology and development in Aspergillus nidulans: a complex puzzle. Fungal Genet Biol 46 Suppl 1:S82-S92
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Garzia A, Etxebeste O, Herrero-Garcia E, Fischer R, Espeso EA, Ugalde UGarzia A, et al. (2009) Aspergillus nidulans FlbE is an upstream developmental activator of conidiation functionally associated with the putative transcription factor FlbB. Mol Microbiol 71(1):172-84
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Etxebeste O, Herrero-Garcia E, Araujo-Bazan L, Rodriguez-Urra AB, Garzia A, Ugalde U, Espeso EAEtxebeste O, et al. (2009) The bZIP-type transcription factor FlbB regulates distinct morphogenetic stages of colony formation in Aspergillus nidulans. Mol Microbiol 73(5):775-89
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Etxebeste O, Markina-Inarrairaegui A, Garzia A, Herrero-Garcia E, Ugalde U, Espeso EAEtxebeste O, et al. (2009) KapI, a non-essential member of the Pse1p/Imp5 karyopherin family, controls colonial and asexual development in Aspergillus nidulans. Microbiology 155(Pt 12):3934-45
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Araujo-Bazan L, Dhingra S, Chu J, Fernandez-Martinez J, Calvo AM, Espeso EAAraujo-Bazan L, et al. (2009) Importin alpha is an essential nuclear import carrier adaptor required for proper sexual and asexual development and secondary metabolism in Aspergillus nidulans. Fungal Genet Biol 46(6-7):506-15
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Taheri-Talesh N, Horio T, Araujo-Bazan L, Dou X, Espeso EA, Penalva MA, Osmani SA, Oakley BRTaheri-Talesh N, et al. (2008) The tip growth apparatus of Aspergillus nidulans. Mol Biol Cell 19(4):1439-49
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Spielvogel A, Findon H, Arst HN, Araujo-Bazan L, Hernandez-Ortiz P, Stahl U, Meyer V, Espeso EASpielvogel A, et al. (2008) Two zinc finger transcription factors, CrzA and SltA, are involved in cation homoeostasis and detoxification in Aspergillus nidulans. Biochem J 414(3):419-29
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Purschwitz J, Muller S, Kastner C, Schoser M, Haas H, Espeso EA, Atoui A, Calvo AM, Fischer RPurschwitz J, et al. (2008) Functional and physical interaction of blue- and red-light sensors in Aspergillus nidulans. Curr Biol 18(4):255-9
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Etxebeste O, Ni M, Garzia A, Kwon NJ, Fischer R, Yu JH, Espeso EA, Ugalde UEtxebeste O, et al. (2008) Basic-zipper-type transcription factor FlbB controls asexual development in Aspergillus nidulans. Eukaryot Cell 7(1):38-48
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Araujo-Bazan L, Penalva MA, Espeso EAAraujo-Bazan L, et al. (2008) Preferential localization of the endocytic internalization machinery to hyphal tips underlies polarization of the actin cytoskeleton in Aspergillus nidulans. Mol Microbiol 67(4):891-905
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Araujo-Bazan L, Fernandez-Martinez J, Rios VM, Etxebeste O, Albar JP, Penalva MA, Espeso EAAraujo-Bazan L, et al. (2008) NapA and NapB are the Aspergillus nidulans Nap/SET family members and NapB is a nuclear protein specifically interacting with importin alpha. Fungal Genet Biol 45(3):278-91
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Stinnett SM, Espeso EA, Cobeno L, Araujo-Bazan L, Calvo AMStinnett SM, et al. (2007) Aspergillus nidulans VeA subcellular localization is dependent on the importin alpha carrier and on light. Mol Microbiol 63(1):242-55
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Calcagno-Pizarelli AM, Negrete-Urtasun S, Denison SH, Rudnicka JD, Bussink HJ, Munera-Huertas T, Stanton L, Hervas-Aguilar A, Espeso EA, Tilburn J, Arst HN Jr, Penalva MACalcagno-Pizarelli AM, et al. (2007) Establishment of the ambient pH signaling complex in Aspergillus nidulans: PalI assists plasma membrane localization of PalH. Eukaryot Cell 6(12):2365-75
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Bernreiter A, Ramon A, Fernandez-Martinez J, Berger H, Araujo-Bazan L, Espeso EA, Pachlinger R, Gallmetzer A, Anderl I, Scazzocchio C, Strauss JBernreiter A, et al. (2007) Nuclear export of the transcription factor NirA is a regulatory checkpoint for nitrate induction in Aspergillus nidulans. Mol Cell Biol 27(3):791-802
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Espeso EA, Cobeno L, Arst HN JrEspeso EA, et al. (2005) Discrepancies between recombination frequencies and physical distances in Aspergillus nidulans: implications for gene identification. Genetics 171(2):835-8
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Fernandez-Martinez J, Brown CV, Diez E, Tilburn J, Arst HN Jr, Penalva MA, Espeso EAFernandez-Martinez J, et al. (2003) Overlap of nuclear localisation signal and specific DNA-binding residues within the zinc finger domain of PacC. J Mol Biol 334(4):667-84
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Caracuel Z, Roncero MI, Espeso EA, Gonzalez-Verdejo CI, Garcia-Maceira FI, Di Pietro ACaracuel Z, et al. (2003) The pH signalling transcription factor PacC controls virulence in the plant pathogen Fusarium oxysporum. Mol Microbiol 48(3):765-79
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Diez E, Alvaro J, Espeso EA, Rainbow L, Suarez T, Tilburn J, Arst HN Jr, Penalva MADiez E, et al. (2002) Activation of the Aspergillus PacC zinc finger transcription factor requires two proteolytic steps. EMBO J 21(6):1350-9
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Mingot JM, Espeso EA, Diez E, Penalva MAMingot JM, et al. (2001) Ambient pH signaling regulates nuclear localization of the Aspergillus nidulans PacC transcription factor. Mol Cell Biol 21(5):1688-99
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Denison SH, Negrete-Urtasun S, Mingot JM, Tilburn J, Mayer WA, Goel A, Espeso EA, Penalva MA, Arst HNDenison SH, et al. (2001) Putative membrane components of signal transduction pathways for ambient pH regulation in Aspergillus and meiosis in Saccharomyces are homologous Addendum. Mol Microbiol 39(1):211
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Espeso EA, Roncal T, Diez E, Rainbow L, Bignell E, Alvaro J, Suarez T, Denison SH, Tilburn J, Arst HN Jr, Penalva MAEspeso EA, et al. (2000) On how a transcription factor can avoid its proteolytic activation in the absence of signal transduction. EMBO J 19(4):719-28
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Espeso EA, Arst HN JrEspeso EA and Arst HN Jr (2000) On the mechanism by which alkaline pH prevents expression of an acid-expressed gene. Mol Cell Biol 20(10):3355-63
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Negrete-Urtasun S, Reiter W, Diez E, Denison SH, Tilburn J, Espeso EA, Penalva MA, Arst HN JrNegrete-Urtasun S, et al. (1999) Ambient pH signal transduction in Aspergillus: completion of gene characterization. Mol Microbiol 33(5):994-1003
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Mingot JM, Tilburn J, Diez E, Bignell E, Orejas M, Widdick DA, Sarkar S, Brown CV, Caddick MX, Espeso EA, Arst HN Jr, Penalva MAMingot JM, et al. (1999) Specificity determinants of proteolytic processing of Aspergillus PacC transcription factor are remote from the processing site, and processing occurs in yeast if pH signalling is bypassed. Mol Cell Biol 19(2):1390-400
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Hutchings H, Stahmann KP, Roels S, Espeso EA, Timberlake WE, Arst HN Jr, Tilburn JHutchings H, et al. (1999) The multiply-regulated gabA gene encoding the GABA permease of Aspergillus nidulans: a score of exons. Mol Microbiol 32(3):557-68
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Reoyo E, Espeso EA, Penalva MA, Suarez TReoyo E, et al. (1998) The essential Aspergillus nidulans gene pmaA encodes an homologue of fungal plasma membrane H(+)-ATPases. Fungal Genet Biol 23(3):288-99
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Denison SH, Negrete-Urtasun S, Mingot JM, Tilburn J, Mayer WA, Goel A, Espeso EA, Penalva MA, Arst HN JrDenison SH, et al. (1998) Putative membrane components of signal transduction pathways for ambient pH regulation in Aspergillus and meiosis in saccharomyces are homologous. Mol Microbiol 30(2):259-64
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Espeso EA, Tilburn J, Sanchez-Pulido L, Brown CV, Valencia A, Arst HN Jr, Penalva MAEspeso EA, et al. (1997) Specific DNA recognition by the Aspergillus nidulans three zinc finger transcription factor PacC. J Mol Biol 274(4):466-80
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Espeso EA, Penalva MAEspeso EA and Penalva MA (1996) Three binding sites for the Aspergillus nidulans PacC zinc-finger transcription factor are necessary and sufficient for regulation by ambient pH of the isopenicillin N synthase gene promoter. J Biol Chem 271(46):28825-30
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Tilburn J, Sarkar S, Widdick DA, Espeso EA, Orejas M, Mungroo J, Penalva MA, Arst HN JrTilburn J, et al. (1995) The Aspergillus PacC zinc finger transcription factor mediates regulation of both acid- and alkaline-expressed genes by ambient pH. EMBO J 14(4):779-90
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Orejas M, Espeso EA, Tilburn J, Sarkar S, Arst HN Jr, Penalva MAOrejas M, et al. (1995) Activation of the Aspergillus PacC transcription factor in response to alkaline ambient pH requires proteolysis of the carboxy-terminal moiety. Genes Dev 9(13):1622-32
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Espeso EA, Fernandez-Canon JM, Penalva MAEspeso EA, et al. (1995) Carbon regulation of penicillin biosynthesis in Aspergillus nidulans: a minor effect of mutations in creB and creC. FEMS Microbiol Lett 126(1):63-7
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Espeso EA, Penalva MAEspeso EA and Penalva MA (1994) In vitro binding of the two-finger repressor CreA to several consensus and non-consensus sites at the ipnA upstream region is context dependent. FEBS Lett 342(1):43-8
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Espeso EA, Tilburn J, Arst HN Jr, Penalva MAEspeso EA, et al. (1993) pH regulation is a major determinant in expression of a fungal penicillin biosynthetic gene. EMBO J 12(10):3947-56
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Espeso EA, Penalva MAEspeso EA and Penalva MA (1992) Carbon catabolite repression can account for the temporal pattern of expression of a penicillin biosynthetic gene in Aspergillus nidulans. Mol Microbiol 6(11):1457-65
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