4.6 Article

Phosphoregulation of the Titin-cap Protein Telethonin in Cardiac Myocytes

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 289, 期 3, 页码 1282-1293

出版社

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M113.479030

关键词

CaMKII; Cardiac Muscle; Cardiomyopathy; Excitation-Contraction Coupling; Protein Kinase D (PKD); Protein Phosphorylation

资金

  1. British Heart Foundation (BHF) [FS/06/079]
  2. Centre of Research Excellence Award [RE/08/003]
  3. Medical Research Council [G0800206]
  4. British Heart Foundation [PG/11/127/29322, FS/13/2/29892] Funding Source: researchfish
  5. Medical Research Council [G0600251, G0800206, MR/J010456/1, G0200496] Funding Source: researchfish
  6. MRC [G0600251, G0800206, MR/J010456/1] Funding Source: UKRI

向作者/读者索取更多资源

Background: Telethonin mutations are associated with cardiomyopathy through unknown mechanisms. Results: Telethonin is a substrate for CaMK family kinases and exists in a bis-phosphorylated state in cardiomyocytes, in which non-phosphorylated telethonin disrupts transverse tubule organization and intracellular calcium transients. Conclusion: Telethonin phosphorylation is critical for the maintenance of normal cardiomyocyte morphology and calcium handling. Significance: Disruption of phospho-telethonin functions may contribute to pathogenesis in cardiomyopathy. Telethonin (also known as titin-cap or t-cap) is a muscle-specific protein whose mutation is associated with cardiac and skeletal myopathies through unknown mechanisms. Our previous work identified cardiac telethonin as an interaction partner for the protein kinase D catalytic domain. In this study, kinase assays used in conjunction with MS and site-directed mutagenesis confirmed telethonin as a substrate for protein kinase D and Ca2+/calmodulin-dependent kinase II in vitro and identified Ser-157 and Ser-161 as the phosphorylation sites. Phosphate affinity electrophoresis and MS revealed endogenous telethonin to exist in a constitutively bis-phosphorylated form in isolated adult rat ventricular myocytes and in mouse and rat ventricular myocardium. Following heterologous expression in myocytes by adenoviral gene transfer, wild-type telethonin became bis-phosphorylated, whereas S157A/S161A telethonin remained non-phosphorylated. Nevertheless, both proteins localized predominantly to the sarcomeric Z-disc, where they partially replaced endogenous telethonin. Such partial replacement with S157A/S161A telethonin disrupted transverse tubule organization and prolonged the time to peak of the intracellular Ca2+ transient and increased its variance. These data reveal, for the first time, that cardiac telethonin is constitutively bis-phosphorylated and suggest that such phosphorylation is critical for normal telethonin function, which may include maintenance of transverse tubule organization and intracellular Ca2+ transients.

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