Mitochondrial respiration promotes Cdc37-dependent stability of the Cdk1 homolog Cdc28.
暂无分享,去创建一个
[1] T. Mondeel,et al. Unveiling Forkhead-mediated regulation of yeast cell cycle and metabolic networks , 2022, Computational and structural biotechnology journal.
[2] Martin L. Duennwald,et al. Hsp90 and its co‐chaperone Sti1 control TDP‐43 misfolding and toxicity , 2021, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[3] J. Westholm,et al. Building blocks are synthesized on demand during the yeast cell cycle , 2020, Proceedings of the National Academy of Sciences.
[4] Geoff S. Higgins,et al. Oxidative Phosphorylation as an Emerging Target in Cancer Therapy , 2018, Clinical Cancer Research.
[5] Matthias Heinemann,et al. Quantitative characterization of the auxin-inducible degron: a guide for dynamic protein depletion in single yeast cells , 2017, Scientific Reports.
[6] Edith D. Wong,et al. Curated protein information in the Saccharomyces genome database , 2017, Database J. Biol. Databases Curation.
[7] Nicola Zamboni,et al. The Yeast Cyclin-Dependent Kinase Routes Carbon Fluxes to Fuel Cell Cycle Progression. , 2016, Molecular cell.
[8] F. Severin,et al. Mitochondrial retrograde signaling inhibits the survival during prolong S/G2 arrest in Saccharomyces cerevisiae , 2015, Oncotarget.
[9] J. Vowinckel,et al. MitoLoc: A method for the simultaneous quantification of mitochondrial network morphology and membrane potential in single cells , 2015, Mitochondrion.
[10] Josip S. Herman,et al. Cell cycle–dependent regulation of mitochondrial preprotein translocase , 2014, Science.
[11] L. Saraíva,et al. LRRK2, but not pathogenic mutants, protects against H2O2 stress depending on mitochondrial function and endocytosis in a yeast model. , 2014, Biochimica et biophysica acta.
[12] P. Piper,et al. Cdc37 engages in stable, S14A mutation-reinforced association with the most atypical member of the yeast kinome, Cdk-activating kinase (Cak1) , 2014, Cell Stress and Chaperones.
[13] I. Boldogh,et al. Rad53 is essential for a mitochondrial DNA inheritance checkpoint regulating G1 to S progression , 2012, The Journal of cell biology.
[14] Marta A. Uzarska,et al. The role of mitochondria in cellular iron-sulfur protein biogenesis and iron metabolism. , 2012, Biochimica et biophysica acta.
[15] Dongmei Liu,et al. Loss of Mitochondrial DNA in the Yeast Cardiolipin Synthase crd1 Mutant Leads to Up-regulation of the Protein Kinase Swe1p That Regulates the G2/M Transition*♦ , 2010, The Journal of Biological Chemistry.
[16] I. Boldogh,et al. Mitochondrial Inheritance Is Required for MEN-Regulated Cytokinesis in Budding Yeast , 2009, Current Biology.
[17] M. Barbacid,et al. Cell cycle, CDKs and cancer: a changing paradigm , 2009, Nature Reviews Cancer.
[18] Klaus Natter,et al. Cdk1/Cdc28-dependent activation of the major triacylglycerol lipase Tgl4 in yeast links lipolysis to cell-cycle progression. , 2009, Molecular cell.
[19] L. Pearl,et al. Hsp90-Dependent Activation of Protein Kinases Is Regulated by Chaperone-Targeted Dephosphorylation of Cdc37 , 2008, Molecular cell.
[20] L. Weisman,et al. The cyclin-dependent kinase Cdk1 directly regulates vacuole inheritance. , 2008, Developmental cell.
[21] S. Hohmann,et al. The pathway by which the yeast protein kinase Snf1p controls acquisition of sodium tolerance is different from that mediating glucose regulation. , 2008, Microbiology.
[22] Joshua E. S. Socolar,et al. Global control of cell-cycle transcription by coupled CDK and network oscillators , 2008, Nature.
[23] S. Hohmann,et al. Isc1p plays a key role in hydrogen peroxide resistance and chronological lifespan through modulation of iron levels and apoptosis. , 2007, Molecular biology of the cell.
[24] Steven P. Gygi,et al. Cdk1 coordinates cell-surface growth with the cell cycle , 2007, Nature Cell Biology.
[25] Toshihiko Oka,et al. Mitotic Phosphorylation of Dynamin-related GTPase Drp1 Participates in Mitochondrial Fission* , 2007, Journal of Biological Chemistry.
[26] M. Siderius,et al. Cdc37p Is Required for Stress-Induced High-Osmolarity Glycerol and Protein Kinase C Mitogen-Activated Protein Kinase Pathway Functionality by Interaction with Hog1p and Slt2p (Mpk1p) , 2007, Eukaryotic Cell.
[27] Nadinath B. Nillegoda,et al. Cdc37 has distinct roles in protein kinase quality control that protect nascent chains from degradation and promote posttranslational maturation , 2007, The Journal of cell biology.
[28] K. Kinnally,et al. Tim17p Regulates the Twin Pore Structure and Voltage Gating of the Mitochondrial Protein Import Complex TIM23* , 2006, Journal of Biological Chemistry.
[29] R. Schiestl,et al. High-efficiency yeast transformation using the LiAc/SS carrier DNA/PEG method , 2007, Nature Protocols.
[30] B. Westermann,et al. Role of essential genes in mitochondrial morphogenesis in Saccharomyces cerevisiae. , 2005, Molecular biology of the cell.
[31] Y. Miyata,et al. Supervision of Multiple Signaling Protein Kinases by the CK2‐Cdc37 Couple, a Possible Novel Cancer Therapeutic Target , 2004, Annals of the New York Academy of Sciences.
[32] N. Avadhani,et al. Mitochondrial signaling: the retrograde response. , 2004, Molecular cell.
[33] M. Aon,et al. Decreased mitochondrial biogenesis in temperature-sensitive cell division cycle mutants of Saccharomyces cerevisiae , 1995, Current Microbiology.
[34] R. Matts,et al. Phosphorylation of Serine 13 Is Required for the Proper Function of the Hsp90 Co-chaperone, Cdc37* , 2003, Journal of Biological Chemistry.
[35] S. Bandhakavi,et al. A Positive Feedback Loop between Protein Kinase CKII and Cdc37 Promotes the Activity of Multiple Protein Kinases* , 2003, The Journal of Biological Chemistry.
[36] Steven B Haase,et al. Improved Flow Cytometric Analysis of the Budding Yeast Cell Cycle , 2002, Cell cycle.
[37] C. Epstein,et al. RTG‐dependent mitochondria to nucleus signaling is negatively regulated by the seven WD‐repeat protein Lst8p , 2001, The EMBO journal.
[38] W. Neupert,et al. Mitochondria‐targeted green fluorescent proteins: convenient tools for the study of organelle biogenesis in Saccharomyces cerevisiae , 2000, Yeast.
[39] D. Morgan,et al. Cdc37 Promotes the Stability of Protein Kinases Cdc28 and Cak1 , 2000, Molecular and Cellular Biology.
[40] X. J. Chen,et al. α and β subunits of F1-ATPase are required for survival of petite mutants in Saccharomyces cerevisiae , 1999, Molecular and General Genetics MGG.
[41] R. A. Butow,et al. A Transcriptional Switch in the Expression of Yeast Tricarboxylic Acid Cycle Genes in Response to a Reduction or Loss of Respiratory Function , 1999, Molecular and Cellular Biology.
[42] David Lydall,et al. NDD1, a High-Dosage Suppressor ofcdc28-1N, Is Essential for Expression of a Subset of Late-S-Phase-Specific Genes in Saccharomyces cerevisiae , 1999, Molecular and Cellular Biology.
[43] M. Mendenhall,et al. Regulation of Cdc28 Cyclin-Dependent Protein Kinase Activity during the Cell Cycle of the Yeast Saccharomyces cerevisiae , 1998, Microbiology and Molecular Biology Reviews.
[44] Michael Ruogu Zhang,et al. Comprehensive identification of cell cycle-regulated genes of the yeast Saccharomyces cerevisiae by microarray hybridization. , 1998, Molecular biology of the cell.
[45] N. Koltovaya,et al. Mutations of the CDC28 gene and the radiation sensitivity of Saccharomyces cerevisiae , 1998, Yeast.
[46] S. Lindquist,et al. Cdc 37 is a molecular chaperone with specific functions in signal transductlon , 2007 .
[47] M. Snyder,et al. SBF Cell Cycle Regulator as a Target of the Yeast PKC-MAP Kinase Pathway , 1997, Science.
[48] I. Herskowitz,et al. Cdc37 is required for association of the protein kinase Cdc28 with G1 and mitotic cyclins. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[49] A. Varshavsky,et al. Heat-inducible degron: a method for constructing temperature-sensitive mutants. , 1994, Science.
[50] Uttam Surana,et al. The role of CDC28 and cyclins during mitosis in the budding yeast S. cerevisiae , 1991, Cell.
[51] P. Srere,et al. Intramitochondrial functions regulate nonmitochondrial citrate synthase (CIT2) expression in Saccharomyces cerevisiae , 1991, Molecular and cellular biology.
[52] I. Arman,et al. The start gene CDC28 and the genetic stability of yeast , 1990, Yeast.
[53] I. Herskowitz,et al. CDC36 and CDC39 are negative elements in the signal transduction pathway of yeast. , 1990, Cell regulation.
[54] O. Warburg. [Origin of cancer cells]. , 1956, Oncologia.