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CK2 Inhibits TIMELESS Nuclear Export and Modulates CLOCK Transcriptional Activity to Regulate Circadian Rhythms

Circadian clocks orchestrate daily rhythms in organismal physiology and behavior to promote optimal performance and fitness. In Drosophila, key pacemaker proteins PERIOD (PER) and TIMELESS (TIM) are progressively phosphorylated to perform phase-specific functions. Whereas PER phosphorylation has bee...

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Autores principales: Cai, Yao D., Xue, Yongbo, Truong, Cindy C., Del Carmen-Li, Jose, Ochoa, Christopher, Vanselow, Jens T., Murphy, Katherine A., Li, Ying H., Liu, Xianhui, Kunimoto, Ben L., Zheng, Haiyan, Zhao, Caifeng, Zhang, Yong, Schlosser, Andreas, Chiu, Joanna C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7878342/
https://www.ncbi.nlm.nih.gov/pubmed/33217322
http://dx.doi.org/10.1016/j.cub.2020.10.061
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author Cai, Yao D.
Xue, Yongbo
Truong, Cindy C.
Del Carmen-Li, Jose
Ochoa, Christopher
Vanselow, Jens T.
Murphy, Katherine A.
Li, Ying H.
Liu, Xianhui
Kunimoto, Ben L.
Zheng, Haiyan
Zhao, Caifeng
Zhang, Yong
Schlosser, Andreas
Chiu, Joanna C.
author_facet Cai, Yao D.
Xue, Yongbo
Truong, Cindy C.
Del Carmen-Li, Jose
Ochoa, Christopher
Vanselow, Jens T.
Murphy, Katherine A.
Li, Ying H.
Liu, Xianhui
Kunimoto, Ben L.
Zheng, Haiyan
Zhao, Caifeng
Zhang, Yong
Schlosser, Andreas
Chiu, Joanna C.
author_sort Cai, Yao D.
collection PubMed
description Circadian clocks orchestrate daily rhythms in organismal physiology and behavior to promote optimal performance and fitness. In Drosophila, key pacemaker proteins PERIOD (PER) and TIMELESS (TIM) are progressively phosphorylated to perform phase-specific functions. Whereas PER phosphorylation has been extensively studied, systematic analysis of site-specific TIM phosphorylation is lacking. Here, we identified phosphorylation sites of PER-bound TIM by mass spectrometry, given the importance of TIM as a modulator of PER function in the pacemaker. Among the 12 TIM phosphorylation sites we identified, at least two of them are critical for circadian timekeeping as mutants expressing non-phosphorylatable mutations exhibit altered behavioral rhythms. In particular, we observed that CK2-dependent phosphorylation of TIM(S1404) promotes nuclear accumulation of PER-TIM heterodimers by inhibiting the interaction of TIM and nuclear export component, Exportin 1 (XPO1). We propose that proper level of nuclear PER-TIM accumulation is necessary to facilitate kinase recruitment for the regulation of daily phosphorylation rhythm and phase-specific transcriptional activity of CLOCK (CLK). Our results highlight the contribution of phosphorylation-dependent nuclear export of PER-TIM heterodimers to the maintenance of circadian periodicity and identify a new mechanism by which the negative elements of the circadian clock (PER-TIM) regulate the positive elements (CLK-CYC). Finally, because the molecular phenotype of tim(S1404A) non-phosphorylatable mutant exhibits remarkable similarity to that of a mutation in human timeless that underlies familial advanced sleep phase syndrome (FASPS), our results revealed an unexpected parallel between the functions of Drosophila and human TIM and may provide new insights into the molecular mechanisms underlying human FASPS.
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spelling pubmed-78783422021-02-12 CK2 Inhibits TIMELESS Nuclear Export and Modulates CLOCK Transcriptional Activity to Regulate Circadian Rhythms Cai, Yao D. Xue, Yongbo Truong, Cindy C. Del Carmen-Li, Jose Ochoa, Christopher Vanselow, Jens T. Murphy, Katherine A. Li, Ying H. Liu, Xianhui Kunimoto, Ben L. Zheng, Haiyan Zhao, Caifeng Zhang, Yong Schlosser, Andreas Chiu, Joanna C. Curr Biol Article Circadian clocks orchestrate daily rhythms in organismal physiology and behavior to promote optimal performance and fitness. In Drosophila, key pacemaker proteins PERIOD (PER) and TIMELESS (TIM) are progressively phosphorylated to perform phase-specific functions. Whereas PER phosphorylation has been extensively studied, systematic analysis of site-specific TIM phosphorylation is lacking. Here, we identified phosphorylation sites of PER-bound TIM by mass spectrometry, given the importance of TIM as a modulator of PER function in the pacemaker. Among the 12 TIM phosphorylation sites we identified, at least two of them are critical for circadian timekeeping as mutants expressing non-phosphorylatable mutations exhibit altered behavioral rhythms. In particular, we observed that CK2-dependent phosphorylation of TIM(S1404) promotes nuclear accumulation of PER-TIM heterodimers by inhibiting the interaction of TIM and nuclear export component, Exportin 1 (XPO1). We propose that proper level of nuclear PER-TIM accumulation is necessary to facilitate kinase recruitment for the regulation of daily phosphorylation rhythm and phase-specific transcriptional activity of CLOCK (CLK). Our results highlight the contribution of phosphorylation-dependent nuclear export of PER-TIM heterodimers to the maintenance of circadian periodicity and identify a new mechanism by which the negative elements of the circadian clock (PER-TIM) regulate the positive elements (CLK-CYC). Finally, because the molecular phenotype of tim(S1404A) non-phosphorylatable mutant exhibits remarkable similarity to that of a mutation in human timeless that underlies familial advanced sleep phase syndrome (FASPS), our results revealed an unexpected parallel between the functions of Drosophila and human TIM and may provide new insights into the molecular mechanisms underlying human FASPS. 2020-11-19 2021-02-08 /pmc/articles/PMC7878342/ /pubmed/33217322 http://dx.doi.org/10.1016/j.cub.2020.10.061 Text en This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Cai, Yao D.
Xue, Yongbo
Truong, Cindy C.
Del Carmen-Li, Jose
Ochoa, Christopher
Vanselow, Jens T.
Murphy, Katherine A.
Li, Ying H.
Liu, Xianhui
Kunimoto, Ben L.
Zheng, Haiyan
Zhao, Caifeng
Zhang, Yong
Schlosser, Andreas
Chiu, Joanna C.
CK2 Inhibits TIMELESS Nuclear Export and Modulates CLOCK Transcriptional Activity to Regulate Circadian Rhythms
title CK2 Inhibits TIMELESS Nuclear Export and Modulates CLOCK Transcriptional Activity to Regulate Circadian Rhythms
title_full CK2 Inhibits TIMELESS Nuclear Export and Modulates CLOCK Transcriptional Activity to Regulate Circadian Rhythms
title_fullStr CK2 Inhibits TIMELESS Nuclear Export and Modulates CLOCK Transcriptional Activity to Regulate Circadian Rhythms
title_full_unstemmed CK2 Inhibits TIMELESS Nuclear Export and Modulates CLOCK Transcriptional Activity to Regulate Circadian Rhythms
title_short CK2 Inhibits TIMELESS Nuclear Export and Modulates CLOCK Transcriptional Activity to Regulate Circadian Rhythms
title_sort ck2 inhibits timeless nuclear export and modulates clock transcriptional activity to regulate circadian rhythms
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7878342/
https://www.ncbi.nlm.nih.gov/pubmed/33217322
http://dx.doi.org/10.1016/j.cub.2020.10.061
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