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The GSK-3β-FBXL21 Axis Contributes to Circadian TCAP Degradation and Skeletal Muscle Function

  • Marvin Wirianto
  • , Jiah Yang
  • , Eunju Kim
  • , Song Gao
  • , Keshav Raj Paudel
  • , Jong Min Choi
  • , Jeehwan Choe
  • , Gabrielle F. Gloston
  • , Precious Ademoji
  • , Randika Parakramaweera
  • , Jianping Jin
  • , Karyn A. Esser
  • , Sung Yun Jung
  • , Yong Jian Geng
  • , Hyun Kyoung Lee
  • , Zheng Chen
  • , Seung Hee Yoo
  • University of Texas Health Science Center at Houston
  • Baylor College of Medicine
  • University of Florida
  • Texas Children's Hospital Houston

Research output: Contribution to journalArticlepeer-review

31 Citations (Scopus)

Abstract

FBXL21 is a clock-controlled E3 ligase modulating circadian periodicity via subcellular-specific CRYPTOCHROME degradation. How FBXL21 regulates tissue-specific circadian physiology and what mechanism operates upstream is poorly understood. Here we report the sarcomere component TCAP as a cytoplasmic substrate of FBXL21. FBXL21 interacts with TCAP in a circadian manner antiphasic to TCAP accumulation in skeletal muscle, and circadian TCAP oscillation is disrupted in Psttm mice with an Fbxl21 hypomorph mutation. GSK-3β phosphorylates FBXL21 and TCAP to activate FBXL21-mediated, phosphodegron-dependent TCAP degradation. GSK-3β inhibition or knockdown diminishes FBXL21-Cul1 complex formation and delays FBXL21-mediated TCAP degradation. Finally, Psttm mice show significant skeletal muscle defects, including impaired fiber size, exercise tolerance, grip strength, and response to glucocorticoid-induced atrophy, in conjunction with cardiac dysfunction. These data highlight a circadian regulatory pathway where a GSK-3β-FBXL21 functional axis controls TCAP degradation via SCF complex formation and regulates skeletal muscle function.

Original languageEnglish
Article number108140
JournalCell Reports
Volume32
Issue number11
DOIs
Publication statusPublished - 15 Sept 2020
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2020 The Authors

Keywords

  • circadian clock
  • E3 ligase
  • Fbxl21
  • GSK-3β
  • skeletal muscle
  • TCAP

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