| Author(s) | Citation |
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| Valsecchi I, Sarikaya Bayram O, Wong Sak Hoi J, Muszkieta L, Gibbons J, Prevost MC, Mallet A, Krijnse-Locker J, Ibrahim-Granet O, Mouyna I, Carr P, Bromley M, Aimanianda V, Yu YJ, Rokas A, Braus G, Saveanu C, Bayram O, Paul Latge J | Valsecchi I, et al. (2017) MybA, a transcription factor involved in conidiation and conidial viability of the human pathogen Aspergillus fumigatus. Mol Microbiol
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| Schinke J, Kolog Gulko M, Christmann M, Valerius O, Stumpf SK, Stirz M, Braus GH | Schinke J, et al. (2016) The DenA/DEN1 Interacting Phosphatase DipA Controls Septa Positioning and Phosphorylation-Dependent Stability of Cytoplasmatic DenA/DEN1 during Fungal Development. PLoS Genet 12(3):e1005949
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| Johnk B, Bayram O, Abelmann A, Heinekamp T, Mattern DJ, Brakhage AA, Jacobsen ID, Valerius O, Braus GH | Johnk B, et al. (2016) SCF Ubiquitin Ligase F-box Protein Fbx15 Controls Nuclear Co-repressor Localization, Stress Response and Virulence of the Human Pathogen Aspergillus fumigatus. PLoS Pathog 12(9):e1005899
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| Jaimes-Arroyo R, Lara-Rojas F, Bayram O, Valerius O, Braus GH, Aguirre J | Jaimes-Arroyo R, et al. (2015) The SrkA Kinase Is Part of the SakA Mitogen-Activated Protein Kinase Interactome and Regulates Stress Responses and Development in Aspergillus nidulans. Eukaryot Cell 14(5):495-510
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| Beckmann EA, Kohler AM, Meister C, Christmann M, Draht OW, Rakebrandt N, Valerius O, Braus GH | Beckmann EA, et al. (2015) Integration of the catalytic subunit activates deneddylase activity in vivo as final step in fungal COP9 signalosome assembly. Mol Microbiol 97(1):110-24
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| Terfruchte M, Johnk B, Fajardo-Somera R, Braus GH, Riquelme M, Schipper K, Feldbrugge M | Terfruchte M, et al. (2014) Establishing a versatile Golden Gate cloning system for genetic engineering in fungi. Fungal Genet Biol 62:1-10
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| Sarikaya-Bayram O, Bayram O, Feussner K, Kim JH, Kim HS, Kaever A, Feussner I, Chae KS, Han DM, Han KH, Braus GH | Sarikaya-Bayram O, et al. (2014) Membrane-bound methyltransferase complex VapA-VipC-VapB guides epigenetic control of fungal development. Dev Cell 29(4):406-20
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| Suzuki S, Bayram OS, Bayram O, Braus GH | Suzuki S, et al. (2013) conF and conJ contribute to conidia germination and stress response in the filamentous fungus Aspergillus nidulans. Fungal Genet Biol 56:42-53
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| Koch C, Tria G, Fielding AJ, Brodhun F, Valerius O, Feussner K, Braus GH, Svergun DI, Bennati M, Feussner I | Koch C, et al. (2013) A structural model of PpoA derived from SAXS-analysis-implications for substrate conversion. Biochim Biophys Acta 1831(9):1449-57
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| Harting R, Bayram O, Laubinger K, Valerius O, Braus GH | Harting R, et al. (2013) Interplay of the fungal sumoylation network for control of multicellular development. Mol Microbiol 90(5):1125-45
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| Christmann M, Schmaler T, Gordon C, Huang X, Bayram O, Schinke J, Stumpf S, Dubiel W, Braus GH | Christmann M, et al. (2013) Control of multicellular development by the physically interacting deneddylases DEN1/DenA and COP9 signalosome. PLoS Genet 9(2):e1003275
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| Ahmed YL, Gerke J, Park HS, Bayram O, Neumann P, Ni M, Dickmanns A, Kim SC, Yu JH, Braus GH, Ficner R | Ahmed YL, et al. (2013) The velvet family of fungal regulators contains a DNA-binding domain structurally similar to NF-kappaB. PLoS Biol 11(12):e1001750
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| von Zeska Kress MR, Harting R, Bayram O, Christmann M, Irmer H, Valerius O, Schinke J, Goldman GH, Braus GH | von Zeska Kress MR, et al. (2012) The COP9 signalosome counteracts the accumulation of cullin SCF ubiquitin E3 RING ligases during fungal development. Mol Microbiol 83(6):1162-77
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| Park HS, Bayram O, Braus GH, Kim SC, Yu JH | Park HS, et al. (2012) Characterization of the velvet regulators in Aspergillus fumigatus. Mol Microbiol 86(4):937-53
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| Gerke J, Bayram O, Braus GH | Gerke J, et al. (2012) Fungal S-adenosylmethionine synthetase and the control of development and secondary metabolism in Aspergillus nidulans. Fungal Genet Biol 49(6):443-54
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| Gerke J, Bayram O, Feussner K, Landesfeind M, Shelest E, Feussner I, Braus GH | Gerke J, et al. (2012) Breaking the silence: protein stabilization uncovers silenced biosynthetic gene clusters in the fungus Aspergillus nidulans. Appl Environ Microbiol 78(23):8234-44
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| Colabardini AC, Humanes AC, Gouvea PF, Savoldi M, Goldman MH, Kress MR, Bayram O, Oliveira JV, Gomes MD, Braus GH, Goldman GH | Colabardini AC, et al. (2012) Molecular characterization of the Aspergillus nidulans fbxA encoding an F-box protein involved in xylanase induction. Fungal Genet Biol 49(2):130-40
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| Bayram O, Bayram OS, Ahmed YL, Maruyama J, Valerius O, Rizzoli SO, Ficner R, Irniger S, Braus GH | Bayram O, et al. (2012) The Aspergillus nidulans MAPK module AnSte11-Ste50-Ste7-Fus3 controls development and secondary metabolism. PLoS Genet 8(7):e1002816
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| Bayram O, Bayram OS, Valerius O, Johnk B, Braus GH | Bayram O, et al. (2012) Identification of protein complexes from filamentous fungi with tandem affinity purification. Methods Mol Biol 944:191-205
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| Bayram O, Braus GH | Bayram O and Braus GH (2012) Coordination of secondary metabolism and development in fungi: the velvet family of regulatory proteins. FEMS Microbiol Rev 36(1):1-24
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| Helmstaedt K, Schwier EU, Christmann M, Nahlik K, Westermann M, Harting R, Grond S, Busch S, Braus GH | Helmstaedt K, et al. (2011) Recruitment of the inhibitor Cand1 to the cullin substrate adaptor site mediates interaction to the neddylation site. Mol Biol Cell 22(1):153-64
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| Andersen MR, Salazar MP, Schaap PJ, van de Vondervoort PJ, Culley D, Thykaer J, Frisvad JC, Nielsen KF, Albang R, Albermann K, Berka RM, Braus GH, Braus-Stromeyer SA, Corrochano LM, Dai Z, van Dijck PW, Hofmann G, Lasure LL, Magnuson JK, Menke H, Meijer M, Meijer SL, Nielsen JB, Nielsen ML, van Ooyen AJ, Pel HJ, Poulsen L, Samson RA, Stam H, Tsang A, van den Brink JM, Atkins A, Aerts A, Shapiro H, Pangilinan J, Salamov A, Lou Y, Lindquist E, Lucas S, Grimwood J, Grigoriev IV, Kubicek CP, Martinez D, van Peij NN, Roubos JA, Nielsen J, Baker SE | Andersen MR, et al. (2011) Comparative genomics of citric-acid-producing Aspergillus niger ATCC 1015 versus enzyme-producing CBS 513.88. Genome Res 21(6):885-97
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| Sarikaya Bayram O, Bayram O, Valerius O, Park HS, Irniger S, Gerke J, Ni M, Han KH, Yu JH, Braus GH | Sarikaya Bayram O, et al. (2010) LaeA control of velvet family regulatory proteins for light-dependent development and fungal cell-type specificity. PLoS Genet 6(12):e1001226
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| Nahlik K, Dumkow M, Bayram O, Helmstaedt K, Busch S, Valerius O, Gerke J, Hoppert M, Schwier E, Opitz L, Westermann M, Grond S, Feussner K, Goebel C, Kaever A, Meinicke P, Feussner I, Braus GH | Nahlik K, et al. (2010) The COP9 signalosome mediates transcriptional and metabolic response to hormones, oxidative stress protection and cell wall rearrangement during fungal development. Mol Microbiol 78(4):964-79
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| Braus GH, Irniger S, Bayram O | Braus GH, et al. (2010) Fungal development and the COP9 signalosome. Curr Opin Microbiol 13(6):672-6
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| Bayram O, Braus GH, Fischer R, Rodriguez-Romero J | Bayram O, et al. (2010) Spotlight on Aspergillus nidulans photosensory systems. Fungal Genet Biol 47(11):900-8
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| Bayram O, Sari F, Braus GH, Irniger S | Bayram O, et al. (2009) The protein kinase ImeB is required for light-mediated inhibition of sexual development and for mycotoxin production in Aspergillus nidulans. Mol Microbiol 71(5):1278-95
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| Schmalhorst PS, Krappmann S, Vervecken W, Rohde M, Muller M, Braus GH, Contreras R, Braun A, Bakker H, Routier FH | Schmalhorst PS, et al. (2008) Contribution of galactofuranose to the virulence of the opportunistic pathogen Aspergillus fumigatus. Eukaryot Cell 7(8):1268-77
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| Sasse C, Bignell EM, Hasenberg M, Haynes K, Gunzer M, Braus GH, Krappmann S | Sasse C, et al. (2008) Basal expression of the Aspergillus fumigatus transcriptional activator CpcA is sufficient to support pulmonary aspergillosis. Fungal Genet Biol 45(5):693-704
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| Helmstaedt K, Laubinger K, Vosskuhl K, Bayram O, Busch S, Hoppert M, Valerius O, Seiler S, Braus GH | Helmstaedt K, et al. (2008) The nuclear migration protein NUDF/LIS1 forms a complex with NUDC and BNFA at spindle pole bodies. Eukaryot Cell 7(6):1041-52
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| Bayram O, Krappmann S, Ni M, Bok JW, Helmstaedt K, Valerius O, Braus-Stromeyer S, Kwon NJ, Keller NP, Yu JH, Braus GH | Bayram O, et al. (2008) VelB/VeA/LaeA complex coordinates light signal with fungal development and secondary metabolism. Science 320(5882):1504-6
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| Bayram O, Krappmann S, Seiler S, Vogt N, Braus GH | Bayram O, et al. (2008) Neurospora crassa ve-1 affects asexual conidiation. Fungal Genet Biol 45(2):127-38
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| Bayram O, Biesemann C, Krappmann S, Galland P, Braus GH | Bayram O, et al. (2008) More than a repair enzyme: Aspergillus nidulans photolyase-like CryA is a regulator of sexual development. Mol Biol Cell 19(8):3254-62
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| Hoffmann M, Hornung E, Busch S, Kassner N, Ternes P, Braus GH, Feussner I | Hoffmann M, et al. (2007) A small membrane-peripheral region close to the active center determines regioselectivity of membrane-bound fatty acid desaturases from Aspergillus nidulans. J Biol Chem 282(37):26666-74
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| Busch S, Schwier EU, Nahlik K, Bayram O, Helmstaedt K, Draht OW, Krappmann S, Valerius O, Lipscomb WN, Braus GH | Busch S, et al. (2007) An eight-subunit COP9 signalosome with an intact JAMM motif is required for fungal fruit body formation. Proc Natl Acad Sci U S A 104(19):8089-94
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| Krappmann S, Jung N, Medic B, Busch S, Prade RA, Braus GH | Krappmann S, et al. (2006) The Aspergillus nidulans F-box protein GrrA links SCF activity to meiosis. Mol Microbiol 61(1):76-88
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| Krappmann S, Sasse C, Braus GH | Krappmann S, et al. (2006) Gene targeting in Aspergillus fumigatus by homologous recombination is facilitated in a nonhomologous end- joining-deficient genetic background. Eukaryot Cell 5(1):212-5
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| Lima JF, Malavazi I, von Zeska Kress Fagundes MR, Savoldi M, Goldman MH, Schwier E, Braus GH, Goldman GH | Lima JF, et al. (2005) The csnD/csnE signalosome genes are involved in the Aspergillus nidulans DNA damage response. Genetics 171(3):1003-15
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| Krappmann S, Bayram O, Braus GH | Krappmann S, et al. (2005) Deletion and allelic exchange of the Aspergillus fumigatus veA locus via a novel recyclable marker module. Eukaryot Cell 4(7):1298-307
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| Krappmann S, Braus GH | Krappmann S and Braus GH (2005) Nitrogen metabolism of Aspergillus and its role in pathogenicity. Med Mycol 43 Suppl 1:S31-40
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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 BW | Galagan 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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| Pries R, Bomeke K, Draht O, Kunzler M, Braus GH | Pries R, et al. (2004) Nuclear import of yeast Gcn4p requires karyopherins Srp1p and Kap95p. Mol Genet Genomics 271(3):257-66
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| Krappmann S, Bignell EM, Reichard U, Rogers T, Haynes K, Braus GH | Krappmann S, et al. (2004) The Aspergillus fumigatus transcriptional activator CpcA contributes significantly to the virulence of this fungal pathogen. Mol Microbiol 52(3):785-99
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| Krappmann S, Braus GH | Krappmann S and Braus GH (2003) Deletion of Aspergillus nidulans aroC using a novel blaster module that combines ET cloning and marker rescue. Mol Genet Genomics 268(5):675-83
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| Busch S, Eckert SE, Krappmann S, Braus GH | Busch S, et al. (2003) The COP9 signalosome is an essential regulator of development in the filamentous fungus Aspergillus nidulans. Mol Microbiol 49(3):717-30
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| Busch S, Bode HB, Brakhage AA, Braus GH | Busch S, et al. (2003) Impact of the cross-pathway control on the regulation of lysine and penicillin biosynthesis in Aspergillus nidulans. Curr Genet 42(4):209-19
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| Valerius O, Draht O, Kubler E, Adler K, Hoffmann B, Braus GH | Valerius O, et al. (2001) Regulation of hisHF transcription of Aspergillus nidulans by adenine and amino acid limitation. Fungal Genet Biol 32(1):21-31
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| Strittmatter AW, Irniger S, Braus GH | Strittmatter AW, et al. (2001) Induction of jlbA mRNA synthesis for a putative bZIP protein of Aspergillus nidulans by amino acid starvation. Curr Genet 39(5-6):327-34
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| Hoffmann B, Valerius O, Andermann M, Braus GH | Hoffmann B, et al. (2001) Transcriptional autoregulation and inhibition of mRNA translation of amino acid regulator gene cpcA of filamentous fungus Aspergillus nidulans. Mol Biol Cell 12(9):2846-57
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| Hoffmann B, Eckert SE, Krappmann S, Braus GH | Hoffmann B, et al. (2001) Sexual diploids of Aspergillus nidulans do not form by random fusion of nuclei in the heterokaryon. Genetics 157(1):141-7
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| Hartmann M, Heinrich G, Braus GH | Hartmann M, et al. (2001) Regulative fine-tuning of the two novel DAHP isoenzymes aroFp and aroGp of the filamentous fungus Aspergillus nidulans. Arch Microbiol 175(2):112-21
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| Busch S, Hoffmann B, Valerius O, Starke K, Duvel K, Braus GH | Busch S, et al. (2001) Regulation of the Aspergillus nidulans hisB gene by histidine starvation. Curr Genet 38(6):314-22
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| Hoffmann B, Wanke C, Lapaglia SK, Braus GH | Hoffmann B, et al. (2000) c-Jun and RACK1 homologues regulate a control point for sexual development in Aspergillus nidulans. Mol Microbiol 37(1):28-41
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| Hoffmann B, LaPaglia SK, Kubler E, Andermann M, Eckert SE, Braus GH | Hoffmann B, et al. (2000) Developmental and metabolic regulation of the phosphoglucomutase-encoding gene, pgmB, of Aspergillus nidulans. Mol Gen Genet 262(6):1001-11
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| Eckert SE, Kubler E, Hoffmann B, Braus GH | Eckert SE, et al. (2000) The tryptophan synthase-encoding trpB gene of Aspergillus nidulans is regulated by the cross-pathway control system. Mol Gen Genet 263(5):867-76
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| Krappmann S, Helmstaedt K, Gerstberger T, Eckert S, Hoffmann B, Hoppert M, Schnappauf G, Braus GH | Krappmann S, et al. (1999) The aroC gene of Aspergillus nidulans codes for a monofunctional, allosterically regulated chorismate mutase. J Biol Chem 274(32):22275-82
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| Eckert SE, Hoffmann B, Wanke C, Braus GH | Eckert SE, et al. (1999) Sexual development of Aspergillus nidulans in tryptophan auxotrophic strains. Arch Microbiol 172(3):157-66
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| Wanke C, Eckert S, Albrecht G, van Hartingsveldt W, Punt PJ, van den Hondel CA, Braus GH | Wanke C, et al. (1997) The Aspergillus niger GCN4 homologue, cpcA, is transcriptionally regulated and encodes an unusual leucine zipper. Mol Microbiol 23(1):23-33
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