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  • Author: Powers T
  • References

Author: Powers T


References 33 references


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  • Tsverov J, et al. (2022) Identification of defined structural elements within TOR2 kinase required for TOR complex 2 assembly and function in Saccharomyces cerevisiae. Mol Biol Cell 33(5):ar44 PMID:35293776
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  • Carmona-Gutierrez D, et al. (2018) Guidelines and recommendations on yeast cell death nomenclature. Microb Cell 5(1):4-31 PMID:29354647
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  • Hill A, et al. (2018) Redesigning TOR Kinase to Explore the Structural Basis for TORC1 and TORC2 Assembly. Biomolecules 8(2) PMID:29865216
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  • Murley A, et al. (2017) Sterol transporters at membrane contact sites regulate TORC1 and TORC2 signaling. J Cell Biol 216(9):2679-2689 PMID:28774891
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  • Stauffer B and Powers T (2017) Target of rapamycin signaling mediates vacuolar fragmentation. Curr Genet 63(1):35-42 PMID:27233284
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  • Vlahakis A, et al. (2017) Stress-response transcription factors Msn2 and Msn4 couple TORC2-Ypk1 signaling and mitochondrial respiration to ATG8 gene expression and autophagy. Autophagy 13(11):1804-1812 PMID:29198169
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  • Vlahakis A, et al. (2016) Calcium channel regulator Mid1 links TORC2-mediated changes in mitochondrial respiration to autophagy. J Cell Biol 215(6):779-788 PMID:27899413
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  • Fresques T, et al. (2015) Regulation of ceramide synthase by casein kinase 2-dependent phosphorylation in Saccharomyces cerevisiae. J Biol Chem 290(3):1395-403 PMID:25429105
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  • Stauffer B and Powers T (2015) Target of rapamycin signaling mediates vacuolar fission caused by endoplasmic reticulum stress in Saccharomyces cerevisiae. Mol Biol Cell 26(25):4618-30 PMID:26466677
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  • Niles BJ and Powers T (2014) TOR complex 2-Ypk1 signaling regulates actin polarization via reactive oxygen species. Mol Biol Cell 25(24):3962-72 PMID:25253719
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  • Niles BJ, et al. (2014) TOR complex 2-Ypk1 signaling maintains sphingolipid homeostasis by sensing and regulating ROS accumulation. Cell Rep 6(3):541-52 PMID:24462291
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  • Vlahakis A and Powers T (2014) A role for TOR complex 2 signaling in promoting autophagy. Autophagy 10(11):2085-6 PMID:25426890
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  • Vlahakis A, et al. (2014) TOR complex 2-Ypk1 signaling is an essential positive regulator of the general amino acid control response and autophagy. Proc Natl Acad Sci U S A 111(29):10586-91 PMID:25002487
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  • Liu Q, et al. (2012) Selective ATP-competitive inhibitors of TOR suppress rapamycin-insensitive function of TORC2 in Saccharomyces cerevisiae. ACS Chem Biol 7(6):982-7 PMID:22496512
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  • Niles BJ and Powers T (2012) Plasma membrane proteins Slm1 and Slm2 mediate activation of the AGC kinase Ypk1 by TORC2 and sphingolipids in S. cerevisiae. Cell Cycle 11(20):3745-9 PMID:22895050
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  • Niles BJ, et al. (2012) Plasma membrane recruitment and activation of the AGC kinase Ypk1 is mediated by target of rapamycin complex 2 (TORC2) and its effector proteins Slm1 and Slm2. Proc Natl Acad Sci U S A 109(5):1536-41 PMID:22307609
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  • Aronova S, et al. (2008) Regulation of ceramide biosynthesis by TOR complex 2. Cell Metab 7(2):148-58 PMID:18249174
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  • Aronova S, et al. (2007) Probing the membrane environment of the TOR kinases reveals functional interactions between TORC1, actin, and membrane trafficking in Saccharomyces cerevisiae. Mol Biol Cell 18(8):2779-94 PMID:17507646
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  • Powers T (2007) TOR signaling and S6 kinase 1: Yeast catches up. Cell Metab 6(1):1-2 PMID:17618850
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  • Chen JC and Powers T (2006) Coordinate regulation of multiple and distinct biosynthetic pathways by TOR and PKA kinases in S. cerevisiae. Curr Genet 49(5):281-93 PMID:16397762
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  • Dilova I and Powers T (2006) Accounting for strain-specific differences during RTG target gene regulation in Saccharomyces cerevisiae. FEMS Yeast Res 6(1):112-9 PMID:16423076
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  • Martin DE, et al. (2006) Regulation of ribosome biogenesis: where is TOR? Cell Metab 4(4):259-60 PMID:17011497
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  • Reinke A, et al. (2006) Caffeine targets TOR complex I and provides evidence for a regulatory link between the FRB and kinase domains of Tor1p. J Biol Chem 281(42):31616-26 PMID:16923813
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  • Dilova I, et al. (2004) Tor signaling and nutrient-based signals converge on Mks1p phosphorylation to regulate expression of Rtg1.Rtg3p-dependent target genes. J Biol Chem 279(45):46527-35 PMID:15326168
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  • Powers T (2004) Ribosome biogenesis: giant steps for a giant problem. Cell 119(7):901-2 PMID:15620347
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  • Powers T, et al. (2004) Yeast TOR signaling: a mechanism for metabolic regulation. Curr Top Microbiol Immunol 279:39-51 PMID:14560950
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  • Reinke A, et al. (2004) TOR complex 1 includes a novel component, Tco89p (YPL180w), and cooperates with Ssd1p to maintain cellular integrity in Saccharomyces cerevisiae. J Biol Chem 279(15):14752-62 PMID:14736892
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  • Wedaman KP, et al. (2003) Tor kinases are in distinct membrane-associated protein complexes in Saccharomyces cerevisiae. Mol Biol Cell 14(3):1204-20 PMID:12631735
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  • Crespo JL, et al. (2002) The TOR-controlled transcription activators GLN3, RTG1, and RTG3 are regulated in response to intracellular levels of glutamine. Proc Natl Acad Sci U S A 99(10):6784-9 PMID:11997479
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  • Dilova I, et al. (2002) Mks1 in concert with TOR signaling negatively regulates RTG target gene expression in S. cerevisiae. Curr Biol 12(5):389-95 PMID:11882290
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  • Komeili A, et al. (2000) Mechanism of metabolic control. Target of rapamycin signaling links nitrogen quality to the activity of the Rtg1 and Rtg3 transcription factors. J Cell Biol 151(4):863-78 PMID:11076970
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  • Powers T and Walter P (1999) Regulation of ribosome biogenesis by the rapamycin-sensitive TOR-signaling pathway in Saccharomyces cerevisiae. Mol Biol Cell 10(4):987-1000 PMID:10198052
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  • Powers T and Walter P (1997) A ribosome at the end of the tunnel. Science 278(5346):2072-3 PMID:9432719
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