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

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Schizosaccharomyces (enzymology) < Schizosaccharomyces (genetics) < Schizosaccharomyces (growth & development)  Facettes :

List of bibliographic references indexed by Schizosaccharomyces (genetics)

Number of relevant bibliographic references: 57.
[0-20] [0 - 20][0 - 50][20-40]
Ident.Authors (with country if any)Title
000198 (2019) Sophie Reidman [Israël] ; Adiel Cohen [Israël] ; Martin Kupiec [Israël] ; Ronit Weisman [Israël]The cytosolic form of aspartate aminotransferase is required for full activation of TOR complex 1 in fission yeast.
000199 (2019) Christos Andreadis [République populaire de Chine] ; Lydia Hulme [Royaume-Uni] ; Katherine Wensley [Royaume-Uni] ; Ji-Long Liu [République populaire de Chine, Royaume-Uni]The TOR pathway modulates cytoophidium formation in Schizosaccharomyces pombe.
000251 (2019) Julie Candiracci [Belgique] ; Valerie Migeot [Belgique] ; Yok-Hian Chionh [Singapour] ; Fanelie Bauer [Belgique] ; Thomas Brochier [Belgique] ; Brandon Russell [États-Unis] ; Kazuhiro Shiozaki [Japon, États-Unis] ; Peter Dedon [Singapour, États-Unis] ; Damien Hermand [Belgique]Reciprocal regulation of TORC signaling and tRNA modifications by Elongator enforces nutrient-dependent cell fate.
000275 (2019) Susumu Morigasaki [Japon] ; Lit Chein Chin [Japon] ; Tomoyuki Hatano [Japon] ; Midori Emori [Japon] ; Mika Iwamoto [Japon] ; Hisashi Tatebe [Japon] ; Kazuhiro Shiozaki [Japon, États-Unis]Modulation of TOR complex 2 signaling by the stress-activated MAPK pathway in fission yeast.
000302 (2019) Eriko Oya [Suède] ; Mickaël Durand-Dubief [Suède] ; Adiel Cohen [Israël] ; Vladimir Maksimov [Suède] ; Catherine Schurra [France] ; Jun-Ichi Nakayama [Japon] ; Ronit Weisman [Israël] ; Benoit Arcangioli [France] ; Karl Ekwall [Suède]Leo1 is essential for the dynamic regulation of heterochromatin and gene expression during cellular quiescence.
000375 (2019) Rey-Huei Chen [Taïwan]Chromosome detachment from the nuclear envelope is required for genomic stability in closed mitosis.
000416 (2018) Yoko Otsubo [Japon] ; Tomohiko Matsuo [Japon] ; Akiko Nishimura [Japon] ; Masayuki Yamamoto [Japon] ; Akira Yamashita [Japon]tRNA production links nutrient conditions to the onset of sexual differentiation through the TORC1 pathway.
000439 (2018) José Cansado [Espagne]To finish things well: cysteine methylation ensures selective GTPase membrane localization and signalling.
000453 (2018) Shervi Lie [Australie] ; Peter Banks [Royaume-Uni] ; Conor Lawless [Royaume-Uni] ; David Lydall [Royaume-Uni] ; Janni Petersen [Australie]The contribution of non-essential Schizosaccharomyces pombe genes to fitness in response to altered nutrient supply and target of rapamycin activity.
000460 (2018) Yukiko Nakase [Japon] ; Tomohiro Matsumoto [Japon]The RHEB-mTOR axis regulates expression of Tf2 transposons in fission yeast.
000481 (2018) Adiel Cohen ; Aline Habib [Israël] ; Dana Laor [Israël] ; Sudhanshu Yadav ; Martin Kupiec [Israël] ; Ronit Weisman [Israël]TOR complex 2 in fission yeast is required for chromatin-mediated gene silencing and assembly of heterochromatic domains at subtelomeres.
000526 (2018) Nafees Ahamad [Inde] ; Tanuj Sharma [Inde] ; Saman Khan [Inde] ; Mohammad Imran Siddiqi [Inde] ; Shakil Ahmed [Inde]Phosphorylation of Wat1, human Lst8 homolog is critical for the regulation of TORC2 -Gad8 dependent pathway in fission yeast Schizosacchromyces pombe.
000599 (2018) Kenichi Sajiki [Japon] ; Yuria Tahara [Japon] ; Alejandro Villar-Briones [Japon] ; Tomáš Pluskal [Japon] ; Takayuki Teruya [Japon] ; Ayaka Mori [Japon] ; Mitsuko Hatanaka [Japon] ; Masahiro Ebe [Japon] ; Takahiro Nakamura [Japon] ; Keita Aoki [Japon] ; Yukinobu Nakaseko [Japon] ; Mitsuhiro Yanagida [Oman]Genetic defects in SAPK signalling, chromatin regulation, vesicle transport and CoA-related lipid metabolism are rescued by rapamycin in fission yeast.
000605 (2018) Ruth Martín [Norvège] ; Sandra Lopez-Aviles [Norvège]Express yourself: how PP2A-B55Pab1 helps TORC1 talk to TORC2.
000690 (2017) Emese Pataki [Hongrie] ; Ronit Weisman [Israël] ; Matthias Sipiczki [Hongrie] ; Ida Miklos [Hongrie]fhl1 gene of the fission yeast regulates transcription of meiotic genes and nitrogen starvation response, downstream of the TORC1 pathway.
000730 (2017) Thomas Laboucarié [France] ; Dylane Detilleux [France] ; Ricard A. Rodriguez-Mias [États-Unis] ; Céline Faux [France] ; Yves Romeo [France] ; Mirita Franz-Wachtel [Allemagne] ; Karsten Krug [Allemagne] ; Boris Ma Ek [Allemagne] ; Judit Villén [États-Unis] ; Janni Petersen [Australie] ; Dominique Helmlinger [France]TORC1 and TORC2 converge to regulate the SAGA co-activator in response to nutrient availability.
000836 (2017) Charalampos Rallis [Royaume-Uni] ; Stjohn Townsend [Royaume-Uni] ; Jürg B Hler [Royaume-Uni]Genetic interactions and functional analyses of the fission yeast gsk3 and amk2 single and double mutants defective in TORC1-dependent processes.
000940 (2017) Ruth Martín [Norvège] ; Marina Portantier [Norvège] ; Nathalia Chica [Norvège] ; Mari Nyquist-Andersen [Norvège] ; Juan Mata [Royaume-Uni] ; Sandra Lopez-Aviles [Norvège]A PP2A-B55-Mediated Crosstalk between TORC1 and TORC2 Regulates the Differentiation Response in Fission Yeast.
000995 (2016) Karen Baker [Royaume-Uni] ; Sara Kirkham [Royaume-Uni] ; Lenka Halova [Royaume-Uni] ; Jane Atkin [Royaume-Uni] ; Mirita Franz-Wachtel [Allemagne] ; David Cobley [Royaume-Uni] ; Karsten Krug [Allemagne] ; Boris Ma Ek [Allemagne] ; Daniel P. Mulvihill [Royaume-Uni] ; Janni Petersen [Royaume-Uni]TOR complex 2 localises to the cytokinetic actomyosin ring and controls the fidelity of cytokinesis.
000A73 (2016) Tek N. Lamichhane [États-Unis] ; Aneeshkumar G. Arimbasseri [États-Unis] ; Keshab Rijal [États-Unis] ; James R. Iben [États-Unis] ; Fan Yan Wei [Japon] ; Kazuhito Tomizawa [Japon] ; Richard J. Maraia [États-Unis]Lack of tRNA-i6A modification causes mitochondrial-like metabolic deficiency in S. pombe by limiting activity of cytosolic tRNATyr, not mito-tRNA.
000B00 (2016) Adiel Cohen ; Martin Kupiec [Israël] ; Ronit Weisman [Israël]Gad8 Protein Is Found in the Nucleus Where It Interacts with the MluI Cell Cycle Box-binding Factor (MBF) Transcriptional Complex to Regulate the Response to DNA Replication Stress.

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