Alpha kinase 3 signaling at the M-band maintains sarcomere integrity and proteostasis in striated muscle

α激酶3在M带处的信号传导维持横纹肌的肌节完整性和蛋白质稳态。

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作者:James W McNamara ,Benjamin L Parker ,Holly K Voges ,Neda R Mehdiabadi ,Francesca Bolk ,Feroz Ahmad ,Jin D Chung ,Natalie Charitakis ,Jeffrey Molendijk ,Antonia T L Zech ,Sean Lal ,Mirana Ramialison ,Kathy Karavendzas ,Hayley L Pointer ,Petros Syrris ,Luis R Lopes ,Perry M Elliott ,Gordon S Lynch ,Richard J Mills ,James E Hudson ,Kevin I Watt ,Enzo R Porrello # ,David A Elliott #

Abstract

Muscle contraction is driven by the molecular machinery of the sarcomere. As phosphorylation is a critical regulator of muscle function, the identification of regulatory kinases is important for understanding sarcomere biology. Pathogenic variants in alpha kinase 3 (ALPK3) cause cardiomyopathy and musculoskeletal disease, but little is known about this atypical kinase. Here we show that ALPK3 is an essential component of the M-band of the sarcomere and define the ALPK3-dependent phosphoproteome. ALPK3 deficiency impaired contractility both in human cardiac organoids and in the hearts of mice harboring a pathogenic truncating Alpk3 variant. ALPK3-dependent phosphopeptides were enriched for sarcomeric components of the M-band and the ubiquitin-binding protein sequestosome-1 (SQSTM1) (also known as p62). Analysis of the ALPK3 interactome confirmed binding to M-band proteins including SQSTM1. In human pluripotent stem cell-derived cardiomyocytes modeling cardiomyopathic ALPK3 mutations, sarcomeric organization and M-band localization of SQSTM1 were abnormal suggesting that this mechanism may underly disease pathogenesis.

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