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Posttranslational regulation of the mammalian circadian clock by cryptochrome and protein phosphatase 5.


ABSTRACT: The molecular oscillator that drives circadian rhythmicity in mammals obtains its near 24-h periodicity from posttranslational regulation of clock proteins. Activity of the major clock kinase casein kinase I (CKI) epsilon is regulated by inhibitory autophosphorylation. Here we show that protein phosphatase (PP) 5 regulates the kinase activity of CKIepsilon. We demonstrate that cryptochrome regulates clock protein phosphorylation by modulating the effect of PP5 on CKIepsilon. Like CKIepsilon, PP5 is expressed both in the master circadian clock in the suprachiasmatic nuclei and in peripheral tissues independent of the clock. Expression of a dominant-negative PP5 mutant reduces PER phosphorylation by CKIepsilon in vivo, and down-regulation of PP5 significantly reduces the amplitude of circadian cycling in cultured human fibroblasts. Collectively, these findings indicate that PP5, CKIepsilon, and cryptochrome dynamically regulate the mammalian circadian clock.

SUBMITTER: Partch CL 

PROVIDER: S-EPMC1502481 | biostudies-literature | 2006 Jul

REPOSITORIES: biostudies-literature

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Posttranslational regulation of the mammalian circadian clock by cryptochrome and protein phosphatase 5.

Partch Carrie L CL   Shields Katherine F KF   Thompson Carol L CL   Selby Christopher P CP   Sancar Aziz A  

Proceedings of the National Academy of Sciences of the United States of America 20060621 27


The molecular oscillator that drives circadian rhythmicity in mammals obtains its near 24-h periodicity from posttranslational regulation of clock proteins. Activity of the major clock kinase casein kinase I (CKI) epsilon is regulated by inhibitory autophosphorylation. Here we show that protein phosphatase (PP) 5 regulates the kinase activity of CKIepsilon. We demonstrate that cryptochrome regulates clock protein phosphorylation by modulating the effect of PP5 on CKIepsilon. Like CKIepsilon, PP5  ...[more]

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