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

Index « Auteurs » - entrée « Michael N. Hall »
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Michael Mülleder < Michael N. Hall < Michael Newmarch  Facettes :

List of bibliographic references indexed by Michael N. Hall

Number of relevant bibliographic references: 36.
[0-20] [0 - 20][0 - 36][20-35][20-40]
Ident.Authors (with country if any)Title
000218 (2019) Kazuki Suda [Japon] ; Atsuki Kaneko [Japon] ; Mitsugu Shimobayashi [Suisse] ; Akio Nakashima [Japon] ; Tatsuya Maeda [Japon] ; Michael N. Hall [Suisse] ; Takashi Ushimaru [Japon]TORC1 regulates autophagy induction in response to proteotoxic stress in yeast and human cells.
000238 (2019) Jing Li [France] ; Ignacio Vázquez-García [Royaume-Uni, États-Unis] ; Karl Persson [Suède] ; Asier González [Suisse] ; Jia-Xing Yue [France] ; Benjamin Barré [France] ; Michael N. Hall [Suisse] ; Anthony Long [États-Unis] ; Jonas Warringer [Suède] ; Ville Mustonen [Finlande] ; Gianni Liti [France]Shared Molecular Targets Confer Resistance over Short and Long Evolutionary Timescales.
000321 (2019) Eduardo I. Kessi-Pérez [Chili] ; Francisco Salinas [Chili] ; Jennifer Molinet [Chili] ; Asier González [Suisse] ; Sara Mu Iz [Espagne] ; José M. Guillam N [Espagne] ; Michael N. Hall [Suisse] ; Luis F. Larrondo [Chili] ; Claudio Martínez [Chili]Indirect monitoring of TORC1 signalling pathway reveals molecular diversity among different yeast strains.
000642 (2018) Md Golam Mostofa [Japon] ; Muhammad Arifur Rahman [Japon] ; Naoki Koike [Japon] ; Akter Mst Yeasmin [Japon] ; Nafisa Islam [Japon] ; Talukdar Muhammad Waliullah [Japon] ; Shun Hosoyamada [Japon] ; Mitsugu Shimobayashi [Suisse] ; Takehiko Kobayashi [Japon] ; Michael N. Hall [Suisse] ; Takashi Ushimaru [Oman, Japon]CLIP and cohibin separate rDNA from nucleolar proteins destined for degradation by nucleophagy.
000782 (2017) Asier González [Suisse] ; Michael N. Hall [Suisse]Nutrient sensing and TOR signaling in yeast and mammals.
000927 (2017) Michael N. HallAn Amazing Turn of Events.
000937 (2017) Fei Tang [États-Unis] ; Peng Zhang [États-Unis, République populaire de Chine] ; Peiying Ye [États-Unis] ; Christopher A. Lazarski [États-Unis] ; Qi Wu [États-Unis] ; Ingrid L. Bergin [États-Unis] ; Timothy P. Bender [États-Unis] ; Michael N. Hall [Suisse] ; Ya Cui [République populaire de Chine] ; Liguo Zhang [République populaire de Chine] ; Taijiao Jiang [République populaire de Chine] ; Yang Liu [États-Unis] ; Pan Zheng [États-Unis]A population of innate myelolymphoblastoid effector cell expanded by inactivation of mTOR complex 1 in mice.
000952 (2016) David R. Driscoll [États-Unis] ; Saadia A. Karim [Royaume-Uni] ; Makoto Sano [Japon] ; David M. Gay [Royaume-Uni] ; Wright Jacob [Royaume-Uni] ; Jun Yu [États-Unis] ; Yusuke Mizukami [États-Unis] ; Aarthi Gopinathan [Royaume-Uni] ; Duncan I. Jodrell [Royaume-Uni] ; T R Jeffry Evans [Royaume-Uni] ; Nabeel Bardeesy [États-Unis] ; Michael N. Hall [Suisse] ; Brian J. Quattrochi [États-Unis] ; David S. Klimstra [États-Unis] ; Simon T. Barry [Royaume-Uni] ; Owen J. Sansom [Royaume-Uni] ; Brian C. Lewis [États-Unis] ; Jennifer P. Morton [Royaume-Uni]mTORC2 Signaling Drives the Development and Progression of Pancreatic Cancer.
000B92 (2015) Sravanth K. Hindupur [Suisse] ; Asier González [Suisse] ; Michael N. Hall [Suisse]The opposing actions of target of rapamycin and AMP-activated protein kinase in cell growth control.
000C07 (2015) Asier González [Suisse] ; Mitsugu Shimobayashi [Suisse] ; Tobias Eisenberg [Autriche] ; David Adrian Merle [Autriche] ; Tobias Pendl [Autriche] ; Michael N. Hall [Suisse] ; Tarek Moustafa [Autriche]TORC1 promotes phosphorylation of ribosomal protein S6 via the AGC kinase Ypk3 in Saccharomyces cerevisiae.
000C81 (2015) Ana Paula Oliveira [Suisse] ; Sotiris Dimopoulos [Suisse] ; Alberto Giovanni Busetto [Suisse] ; Stefan Christen [Suisse] ; Reinhard Dechant [Suisse] ; Laura Falter [Suisse] ; Morteza Haghir Chehreghani [Suisse] ; Szymon Jozefczuk [Suisse] ; Christina Ludwig [Suisse] ; Florian Rudroff [Suisse] ; Juliane Caroline Schulz [Suisse] ; Asier González [Suisse] ; Alexandre Soulard [France] ; Daniele Stracka [Suisse] ; Ruedi Aebersold [Suisse] ; Joachim M. Buhmann [Suisse] ; Michael N. Hall [Suisse] ; Matthias Peter [Suisse] ; Uwe Sauer [Suisse] ; Jörg Stelling [Suisse]Inferring causal metabolic signals that regulate the dynamic TORC1-dependent transcriptome.
000E41 (2014) Daniele Stracka ; Szymon Jozefczuk [Suisse] ; Florian Rudroff [Suisse] ; Uwe Sauer [Suisse] ; Michael N. Hall [Suisse]Nitrogen source activates TOR (target of rapamycin) complex 1 via glutamine and independently of Gtr/Rag proteins.
000F69 (2013) Mitsugu Shimobayashi [Suisse] ; Wolfgang Oppliger ; Suzette Moes ; Paul Jenö ; Michael N. HallTORC1-regulated protein kinase Npr1 phosphorylates Orm to stimulate complex sphingolipid synthesis.
001122 (2012) Qingsong Liu ; Tao Ren ; Tara Fresques ; Wolfgang Oppliger ; Brad J. Niles ; Wooyoung Hur ; David M. Sabatini ; Michael N. Hall ; Ted Powers ; Nathanael S. GraySelective ATP-competitive inhibitors of TOR suppress rapamycin-insensitive function of TORC2 in Saccharomyces cerevisiae.
001146 (2012) Caleb M. Cardon [États-Unis] ; Thomas Beck ; Michael N. Hall ; Jared RutterPAS kinase promotes cell survival and growth through activation of Rho1.
001163 (2012) Raúl V. Durán [Suisse] ; Michael N. HallLeucyl-tRNA synthetase: double duty in amino acid sensing.
001255 (2011) Robbie Loewith [Suisse] ; Michael N. HallTarget of rapamycin (TOR) in nutrient signaling and growth control.
001351 (2011) Vittoria Zinzalla [Suisse] ; Daniele Stracka ; Wolfgang Oppliger ; Michael N. HallActivation of mTORC2 by association with the ribosome.
001377 (2010) Alexandre Soulard [Suisse] ; Alessio Cremonesi ; Suzette Moes ; Frédéric Schütz ; Paul Jenö ; Michael N. HallThe rapamycin-sensitive phosphoproteome reveals that TOR controls protein kinase A toward some but not all substrates.
001481 (2009) Nadine Cybulski [Suisse] ; Michael N. HallTOR complex 2: a signaling pathway of its own.
001548 (2009) Thomas W. Sturgill [États-Unis] ; Michael N. HallActivating mutations in TOR are in similar structures as oncogenic mutations in PI3KCalpha.

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