Modeling structural and functional deficiencies ofRBM20familial dilated cardiomyopathy using human induced pluripotent stem cells

Nov 26, 2015Human molecular genetics

Using human stem cells to model heart muscle structure and function problems in inherited RBM20 dilated cardiomyopathy

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Abstract

RBM20 hiPSC-CMs exhibited increased sarcomeric length of 1.747 ± 0.238 µm compared to 1.404 ± 0.194 µm in control cells (P < 0.0001).

  • Heterozygous missense mutations in RBM20 are associated with familial dilated cardiomyopathy.
  • Differential gene expression profiling revealed initial molecular changes linked to cardiac development and function.
  • RBM20-dependent splice variants affected genes involved in sarcomeric structure and calcium handling.
  • RBM20 hiPSC-CMs displayed prolonged calcium levels in the cytoplasm and increased calcium spike amplitude.
  • Under β-adrenergic stress, RBM20 hiPSC-CMs showed a significantly higher susceptibility to sarcomeric disorganization.

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