4.7 Article

Desmoplakin maintains gap junctions by inhibiting Ras/MAPK and lysosomal degradation of connexin-43

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JOURNAL OF CELL BIOLOGY
卷 217, 期 9, 页码 3219-3235

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ROCKEFELLER UNIV PRESS
DOI: 10.1083/jcb.201710161

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资金

  1. NIH [R37AR43380]
  2. J.L. Mayberry Endowment
  3. NIH grant [GM55632]
  4. NIH/National Heart, Lung, and Blood Institute [R01 HL0978006]
  5. Tobacco-Related Disease Research Program [24RT-022]
  6. Translational Research Grant from Robert H. Lurie Comprehensive Cancer Center
  7. Northwestern Medicine Catalyst Fund
  8. Associazione Italiana per la Ricerca sul Cancro [IG11627]
  9. Worldwide Cancer Research [11-0051]
  10. American Heart Association predoctoral fellowship [15PRE25560138]
  11. [P30AR057216]

向作者/读者索取更多资源

Desmoplakin (DP) is an obligate component of desmosomes, intercellular adhesive junctions that maintain the integrity of the epidermis and myocardium. Mutations in DP can cause cardiac and cutaneous disease, including arrhythmogenic cardiomyopathy (ACM), an inherited disorder that frequently results in deadly arrhythmias. Conduction defects in ACM are linked to the remodeling and functional interference with Cx43-based gap junctions that electrically and chemically couple cells. How DP loss impairs gap junctions is poorly understood. We show that DP prevents lysosomal-mediated degradation of Cx43. DP loss triggered robust activation of ERK1/2-MAPK and increased phosphorylation of S279/282 of Cx43, which signals clathrin-mediated internalization and subsequent lysosomal degradation of Cx43. RNA sequencing revealed Ras-GTPases as candidates for the aberrant activation of ERK1/2 upon loss of DP. Using a novel Ras inhibitor, Ras/Rap1-specific peptidase (RRSP), or K-Ras knockdown, we demonstrate restoration of Cx43 in DP-deficient cardiomyocytes. Collectively, our results reveal a novel mechanism for the regulation of the Cx43 life cycle by DP in cardiocutaneous models.

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