Phosphorylation of the Sic1 inhibitor of B-type cyclins in Saccharomyces cerevisiae is not essential but contributes to cell cycle robustness
about
Cascades of multisite phosphorylation control Sic1 destruction at the onset of S phaseOscillatory dynamics of cell cycle proteins in single yeast cells analyzed by imaging cytometry.The Dcr2p phosphatase destabilizes Sic1p in Saccharomyces cerevisiae.Mathematical modelling of DNA replication reveals a trade-off between coherence of origin activation and robustness against rereplicationDesign principles of the yeast G1/S switchCell cycle regulation by feed-forward loops coupling transcription and phosphorylationTwo maize Kip-related proteins differentially interact with, inhibit and are phosphorylated by cyclin D-cyclin-dependent kinase complexesMultisite phosphorylation provides an effective and flexible mechanism for switch-like protein degradation.A synthetic circuit for selectively arresting daughter cells to create aging populations.Optimization and model reduction in the high dimensional parameter space of a budding yeast cell cycle model.The mitotic Clb cyclins are required to alleviate HIR-mediated repression of the yeast histone genes at the G1/S transition.Plasma membrane/cell wall perturbation activates a novel cell cycle checkpoint during G1 in Saccharomyces cerevisiae.Functional overlap among distinct G1/S inhibitory pathways allows robust G1 arrest by yeast mating pheromones.Sic1 as a timer of Clb cyclin waves in the yeast cell cycle--design principle of not just an inhibitor.The p38 and Hog1 SAPKs control cell cycle progression in response to environmental stresses.Response to hyperosmotic stressPhosphate-activated cyclin-dependent kinase stabilizes G1 cyclin to trigger cell cycle entry.Double-negative feedback between S-phase cyclin-CDK and CKI generates abruptness in the G1/S switch.Determination of Cell Cycle Stage and Mitotic Exit Through the Quantification of the Protein Levels of Known Mitotic Regulators.Multiple Mechanisms Inactivate the LIN-41 RNA-Binding Protein To Ensure a Robust Oocyte-to-Embryo Transition in
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P2860
Phosphorylation of the Sic1 inhibitor of B-type cyclins in Saccharomyces cerevisiae is not essential but contributes to cell cycle robustness
description
2007 nî lūn-bûn
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2007 թուականի Յուլիսին հրատարակուած գիտական յօդուած
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2007 թվականի հուլիսին հրատարակված գիտական հոդված
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2007年の論文
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2007年学术文章
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2007年学术文章
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2007年学术文章
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2007年学术文章
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2007年学术文章
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2007年學術文章
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name
Phosphorylation of the Sic1 in ...... butes to cell cycle robustness
@ast
Phosphorylation of the Sic1 in ...... butes to cell cycle robustness
@en
Phosphorylation of the Sic1 in ...... butes to cell cycle robustness
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type
label
Phosphorylation of the Sic1 in ...... butes to cell cycle robustness
@ast
Phosphorylation of the Sic1 in ...... butes to cell cycle robustness
@en
Phosphorylation of the Sic1 in ...... butes to cell cycle robustness
@nl
prefLabel
Phosphorylation of the Sic1 in ...... butes to cell cycle robustness
@ast
Phosphorylation of the Sic1 in ...... butes to cell cycle robustness
@en
Phosphorylation of the Sic1 in ...... butes to cell cycle robustness
@nl
P2093
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Phosphorylation of the Sic1 in ...... butes to cell cycle robustness
@en
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Frederick R Cross
James M Bean
Lea Schroeder
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P304
P356
10.1534/GENETICS.107.073494
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P577
2007-07-01T00:00:00Z