Serveur d'exploration sur la rapamycine et les champignons - Exploration (Accueil)

Index « KwdFr.i » - entrée « Gènes fongiques (MeSH) »
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Gènes essentiels (physiologie) < Gènes fongiques (MeSH) < Gènes fongiques (effets des médicaments et des substances chimiques)  Facettes :

List of bibliographic references indexed by Gènes fongiques (MeSH)

Number of relevant bibliographic references: 68.
[0-20] [0 - 20][0 - 50][20-40]
Ident.Authors (with country if any)Title
000119 (2020) Koji Kasahara [Japon] ; Risa Nakayama [Japon] ; Yuh Shiwa [Japon] ; Yu Kanesaki [Japon] ; Taichiro Ishige [Japon] ; Hirofumi Yoshikawa [Japon] ; Tetsuro Kokubo [Japon]Fpr1, a primary target of rapamycin, functions as a transcription factor for ribosomal protein genes cooperatively with Hmo1 in Saccharomyces cerevisiae.
000377 (2019) Zanetta Chang [États-Unis] ; R Blake Billmyre [États-Unis] ; Soo Chan Lee [États-Unis] ; Joseph Heitman [États-Unis]Broad antifungal resistance mediated by RNAi-dependent epimutation in the basal human fungal pathogen Mucor circinelloides.
000479 (2018) Guangchao Sun [États-Unis] ; Christian Elowsky [États-Unis] ; Gang Li [États-Unis] ; Richard A. Wilson [États-Unis]TOR-autophagy branch signaling via Imp1 dictates plant-microbe biotrophic interface longevity.
000482 (2018) Bhawana Uprety [États-Unis] ; Amala Kaja [États-Unis] ; Sukesh R. Bhaumik [États-Unis]TOR Facilitates the Targeting of the 19S Proteasome Subcomplex To Enhance Transcription Complex Assembly at the Promoters of the Ribosomal Protein Genes.
000720 (2017) Nitish Mittal [Suisse] ; Joao C. Guimaraes [Suisse] ; Thomas Gross [Suisse] ; Alexander Schmidt [Suisse] ; Arnau Vina-Vilaseca [Suisse] ; Danny D. Nedialkova [Allemagne] ; Florian Aeschimann [Suisse] ; Sebastian A. Leidel [Allemagne] ; Anne Spang [Suisse] ; Mihaela Zavolan [Suisse]The Gcn4 transcription factor reduces protein synthesis capacity and extends yeast lifespan.
000774 (2017) Ning-Ning Liu [États-Unis] ; Peter R. Flanagan [Irlande (pays)] ; Jumei Zeng [États-Unis] ; Niketa M. Jani [États-Unis] ; Maria E. Cardenas [États-Unis] ; Gary P. Moran [Irlande (pays)] ; Julia R. Köhler [États-Unis]Phosphate is the third nutrient monitored by TOR in Candida albicans and provides a target for fungal-specific indirect TOR inhibition.
000845 (2017) Agnès H. Michel [Suisse] ; Riko Hatakeyama [Suisse] ; Philipp Kimmig [Suisse] ; Meret Arter [Suisse] ; Matthias Peter [Suisse] ; Joao Matos [Suisse] ; Claudio De Virgilio [Suisse] ; Benoît Kornmann [Suisse]Functional mapping of yeast genomes by saturated transposition.
000A61 (2016) Dayane Santos Gomes [Brésil] ; Maíza Alves Lopes [Brésil] ; Sara Pereira Menezes [Brésil] ; Lidiane Figueredo Ribeiro [Brésil] ; Cristiano Villela Dias [Brésil] ; Bruno Silva Andrade [Brésil] ; Raildo Mota De Jesus [Brésil] ; Acassia Benjamin Leal Pires [Brésil] ; Arist Teles Goes-Neto [Brésil] ; Fabienne Micheli [France]Mycelial development preceding basidioma formation in Moniliophthora perniciosa is associated to chitin, sugar and nutrient metabolism alterations involving autophagy.
000B11 (2016) Yongkang Wang [République populaire de Chine] ; Xiaodan Song [République populaire de Chine] ; Yongjun Zhang [République populaire de Chine] ; Bochu Wang [République populaire de Chine] ; Xiang Zou [République populaire de Chine]Effects of nitrogen availability on polymalic acid biosynthesis in the yeast-like fungus Aureobasidium pullulans.
000D00 (2015) Kentaro Maegawa [Japon] ; Rumi Takii [Japon] ; Takashi Ushimaru [Japon] ; Akiko Kozaki [Japon]Evolutionary conservation of TORC1 components, TOR, Raptor, and LST8, between rice and yeast.
000D11 (2015) Margaret E. Katz [Australie] ; Rebecca Buckland [Australie] ; Cameron C. Hunter [États-Unis] ; Richard B. Todd [États-Unis]Distinct roles for the p53-like transcription factor XprG and autophagy genes in the response to starvation.
000D95 (2014) Fangwei Yu [République populaire de Chine] ; Qin Gu ; Yingzi Yun ; Yanni Yin ; Jin-Rong Xu ; Won-Bo Shim ; Zhonghua MaThe TOR signaling pathway regulates vegetative development and virulence in Fusarium graminearum.
000E91 (2014) Mohamed Anwar Bin-Umer [États-Unis] ; John E. Mclaughlin [États-Unis] ; Matthew S. Butterly [États-Unis] ; Susan Mccormick [États-Unis] ; Nilgun E. Tumer [États-Unis]Elimination of damaged mitochondria through mitophagy reduces mitochondrial oxidative stress and increases tolerance to trichothecenes.
000F71 (2013) Charalampos Rallis [Royaume-Uni] ; Sandra Codlin ; Jürg B HlerTORC1 signaling inhibition by rapamycin and caffeine affect lifespan, global gene expression, and cell proliferation of fission yeast.
000F83 (2013) Paul D. Good [États-Unis] ; Ann Kendall ; James Ignatz-Hoover ; Erin L. Miller ; Dave A. Pai ; Sara R. Rivera ; Brian Carrick ; David R. EngelkeSilencing near tRNA genes is nucleosome-mediated and distinct from boundary element function.
001113 (2012) Tammy Pracheil [États-Unis] ; Janet Thornton ; Zhengchang LiuTORC2 signaling is antagonized by protein phosphatase 2A and the Far complex in Saccharomyces cerevisiae.
001114 (2012) Terunao Takahara [Japon] ; Tatsuya MaedaTORC1 of fission yeast is rapamycin-sensitive.
001244 (2011) Nobuyasu Ikai [Japon] ; Norihiko Nakazawa ; Takeshi Hayashi ; Mitsuhiro YanagidaThe reverse, but coordinated, roles of Tor2 (TORC1) and Tor1 (TORC2) kinases for growth, cell cycle and separase-mediated mitosis in Schizosaccharomyces pombe.
001268 (2011) Alarich Reiter [Allemagne] ; Robert Steinbauer ; Anja Philippi ; Jochen Gerber ; Herbert Tschochner ; Philipp Milkereit ; Joachim GriesenbeckReduction in ribosomal protein synthesis is sufficient to explain major effects on ribosome production after short-term TOR inactivation in Saccharomyces cerevisiae.
001302 (2011) Isabelle Georis [Belgique] ; Jennifer J. Tate ; André Feller ; Terrance G. Cooper ; Evelyne DuboisIntranuclear function for protein phosphatase 2A: Pph21 and Pph22 are required for rapamycin-induced GATA factor binding to the DAL5 promoter in yeast.
001417 (2010) Lucia F. Zacchi [États-Unis] ; Jonatan Gomez-Raja ; Dana A. DavisMds3 regulates morphogenesis in Candida albicans through the TOR pathway.

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