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Mutation of a PER2 phosphodegron perturbs the circadian phosphoswitch

Casein kinase 1 (CK1) plays a central role in regulating the period of the circadian clock. In mammals, PER2 protein abundance is regulated by CK1-mediated phosphorylation and proteasomal degradation. On the other hand, recent studies have questioned whether the degradation of the core circadian mac...

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Autores principales: Masuda, Shusaku, Narasimamurthy, Rajesh, Yoshitane, Hikari, Kim, Jae Kyoung, Fukada, Yoshitaka, Virshup, David M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7245125/
https://www.ncbi.nlm.nih.gov/pubmed/32354999
http://dx.doi.org/10.1073/pnas.2000266117
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author Masuda, Shusaku
Narasimamurthy, Rajesh
Yoshitane, Hikari
Kim, Jae Kyoung
Fukada, Yoshitaka
Virshup, David M.
author_facet Masuda, Shusaku
Narasimamurthy, Rajesh
Yoshitane, Hikari
Kim, Jae Kyoung
Fukada, Yoshitaka
Virshup, David M.
author_sort Masuda, Shusaku
collection PubMed
description Casein kinase 1 (CK1) plays a central role in regulating the period of the circadian clock. In mammals, PER2 protein abundance is regulated by CK1-mediated phosphorylation and proteasomal degradation. On the other hand, recent studies have questioned whether the degradation of the core circadian machinery is a critical step in clock regulation. Prior cell-based studies found that CK1 phosphorylation of PER2 at Ser478 recruits the ubiquitin E3 ligase β-TrCP, leading to PER2 degradation. Creation of this phosphodegron is regulated by a phosphoswitch that is also implicated in temperature compensation. However, in vivo evidence that this phosphodegron influences circadian period is lacking. Here, we generated and analyzed PER2-Ser478Ala knock-in mice. The mice showed longer circadian period in behavioral analysis. Molecularly, mutant PER2 protein accumulated in both the nucleus and cytoplasm of the mouse liver, while Per2 messenger RNA (mRNA) levels were minimally affected. Nuclear PER1, CRY1, and CRY2 proteins also increased, probably due to stabilization of PER2-containing complexes. In mouse embryonic fibroblasts derived from PER2-Ser478Ala::LUC mice, three-phase decay and temperature compensation of the circadian period was perturbed. These data provide direct in vivo evidence for the importance of phosphorylation-regulated PER2 stability in the circadian clock and validate the phosphoswitch in a mouse model.
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spelling pubmed-72451252020-06-04 Mutation of a PER2 phosphodegron perturbs the circadian phosphoswitch Masuda, Shusaku Narasimamurthy, Rajesh Yoshitane, Hikari Kim, Jae Kyoung Fukada, Yoshitaka Virshup, David M. Proc Natl Acad Sci U S A Biological Sciences Casein kinase 1 (CK1) plays a central role in regulating the period of the circadian clock. In mammals, PER2 protein abundance is regulated by CK1-mediated phosphorylation and proteasomal degradation. On the other hand, recent studies have questioned whether the degradation of the core circadian machinery is a critical step in clock regulation. Prior cell-based studies found that CK1 phosphorylation of PER2 at Ser478 recruits the ubiquitin E3 ligase β-TrCP, leading to PER2 degradation. Creation of this phosphodegron is regulated by a phosphoswitch that is also implicated in temperature compensation. However, in vivo evidence that this phosphodegron influences circadian period is lacking. Here, we generated and analyzed PER2-Ser478Ala knock-in mice. The mice showed longer circadian period in behavioral analysis. Molecularly, mutant PER2 protein accumulated in both the nucleus and cytoplasm of the mouse liver, while Per2 messenger RNA (mRNA) levels were minimally affected. Nuclear PER1, CRY1, and CRY2 proteins also increased, probably due to stabilization of PER2-containing complexes. In mouse embryonic fibroblasts derived from PER2-Ser478Ala::LUC mice, three-phase decay and temperature compensation of the circadian period was perturbed. These data provide direct in vivo evidence for the importance of phosphorylation-regulated PER2 stability in the circadian clock and validate the phosphoswitch in a mouse model. National Academy of Sciences 2020-05-19 2020-04-30 /pmc/articles/PMC7245125/ /pubmed/32354999 http://dx.doi.org/10.1073/pnas.2000266117 Text en Copyright © 2020 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Masuda, Shusaku
Narasimamurthy, Rajesh
Yoshitane, Hikari
Kim, Jae Kyoung
Fukada, Yoshitaka
Virshup, David M.
Mutation of a PER2 phosphodegron perturbs the circadian phosphoswitch
title Mutation of a PER2 phosphodegron perturbs the circadian phosphoswitch
title_full Mutation of a PER2 phosphodegron perturbs the circadian phosphoswitch
title_fullStr Mutation of a PER2 phosphodegron perturbs the circadian phosphoswitch
title_full_unstemmed Mutation of a PER2 phosphodegron perturbs the circadian phosphoswitch
title_short Mutation of a PER2 phosphodegron perturbs the circadian phosphoswitch
title_sort mutation of a per2 phosphodegron perturbs the circadian phosphoswitch
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7245125/
https://www.ncbi.nlm.nih.gov/pubmed/32354999
http://dx.doi.org/10.1073/pnas.2000266117
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