A serine cluster mediates BMAL1-dependent CLOCK phosphorylation and degradation

被引:110
作者
Spengler, Mary L. [1 ]
Kuropatwinski, Karen K. [1 ]
Schumer, Molly [1 ]
Antoch, Marina P. [1 ]
机构
[1] Roswell Pk Canc Inst, Dept Mol & Cellular Biol, Buffalo, NY 14263 USA
关键词
circadian; CLOCK; GSK-3; beta; phospho-degron; post-translational modification; CIRCADIAN CLOCK; TRANSCRIPTIONAL ACTIVATORS; MOUSE CLOCK; PROTEIN; KINASE; GENE; REVEALS; TRANSACTIVATION; CRYPTOCHROME; OSCILLATION;
D O I
10.4161/cc.8.24.10273
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The circadian clock regulates biological processes from gene expression to organism behavior in a precise, sustained rhythm that is generated at the unicellular level by coordinated function of interlocked transcriptional feedback loops and post-translational modifications of core clock proteins. CLOCK phosphorylation regulates transcriptional activity, cellular localization and stability; however little is known about the specific residues and enzymes involved. We have identified a conserved cluster of serines that include, Ser431, which is a prerequisite phosphorylation site for the generation of BMAL dependent phospho-primed CLOCK and for the potential GSK-3 phosphorylation at Ser427. Mutational analysis and protein stability assays indicate that this serine cluster functions as a phospho-degron. Through the use of GSK-3 activators/inhibitors and kinase assays, we demonstrate that GSK-3 beta regulates the degron site by increasing CLOCK phosphorylation/degradation, which correlates with an increase in the expression of CLOCK responsive promoters. Stabilization of phospho-deficient CLOCK delays the phase of oscillation in synchronized fibroblasts. This investigation begins the characterization of a complex phospho-regulatory site that controls the activity and degradation of CLOCK, a core transcription factor that is essential for circadian behavior.
引用
收藏
页码:4138 / 4146
页数:9
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