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Overexpression of Map3k7 activates sinoatrial node-like differentiation in mouse ES-derived cardiomyocytes.

Kemar BrownStephanie LegrosFrancis A OrtegaYunkai DaiMichael Xavier DossDavid J ChristiniRichard B RobinsonAnn C Foley
Published in: PloS one (2017)
In vivo, cardiomyocytes comprise a heterogeneous population of contractile cells defined by unique electrophysiologies, molecular markers and morphologies. The mechanisms directing myocardial cells to specific sub-lineages remain poorly understood. Here we report that overexpression of TGFβ-Activated Kinase (TAK1/Map3k7) in mouse embryonic stem (ES) cells faithfully directs myocardial differentiation of embryoid body (EB)-derived cardiac cells toward the sinoatrial node (SAN) lineage. Most cardiac cells in Map3k7-overexpressing EBs adopt markers, cellular morphologies, and electrophysiological behaviors characteristic of the SAN. These data, in addition to the fact that Map3k7 is upregulated in the sinus venous-the source of cells for the SAN-suggest that Map3k7 may be an endogenous regulator of the SAN fate.
Keyphrases
  • induced apoptosis
  • cell cycle arrest
  • left ventricular
  • heart failure
  • cell proliferation
  • signaling pathway
  • machine learning
  • transcription factor
  • endothelial cells
  • protein kinase