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Wang, Da-Zhi

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Wang

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Da-Zhi

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Wang, Da-Zhi

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Now showing 1 - 2 of 2
  • Publication

    The Histone Methyltransferase Set7/9 Promotes Myoblast Differentiation and Myofibril Assembly

    (The Rockefeller University Press, 2011) Tao, Yazhong; Neppl, Ronald; Huang, Zhan-Peng; Chen, Jianfu; Tang, Ru-Hang; Cao, Ru; Zhang, Yi; Jin, Suk-Won; Wang, Da-Zhi

    The molecular events that modulate chromatin structure during skeletal muscle differentiation are still poorly understood. We report in this paper that expression of the H3-K4 histone methyltransferase Set7 is increased when myoblasts differentiate into myotubes and is required for skeletal muscle development, expression of muscle contractile proteins, and myofibril assembly. Knockdown of Set7 or expression of a dominant-negative Set7 mutant impairs skeletal muscle differentiation, accompanied by a decrease in levels of histone monomethylation (H3-K4me1). Set7 directly interacts with MyoD to enhance expression of muscle differentiation genes. Expression of myocyte enhancer factor 2 and genes encoding contractile proteins is decreased in Set7 knockdown myocytes. Furthermore, we demonstrate that Set7 also activates muscle gene expression by precluding Suv39h1-mediated H3-K9 methylation on the promoters of myogenic differentiation genes. Together, our experiments define a biological function for Set7 in muscle differentiation and provide a molecular mechanism by which Set7 modulates myogenic transcription factors during muscle differentiation.

  • Publication

    microRNAs in cardiac regeneration and cardiovascular disease

    (2013) Wu, GengZe; Huang, Zhan-Peng; Wang, Da-Zhi

    microRNAs (miRNAs) are a class of small non-coding RNAs, which have been shown important to a wide range of biological process by post-transcriptionally regulating the expression of protein-coding genes. miRNAs have been demonstrated essential to normal cardiac development and function. Recently, numerous studies indicate miRNAs are involved in cardiac regeneration and cardiac disease, including cardiac hypertrophy, myocardial infarction and cardiac arrhythmia. These observations suggest miRNAs play important roles in cardiology. In this review, we summarize the recent progress of studying miRNAs in cardiac regeneration and cardiac disease. We also discuss the diagnostic and therapeutic potential of miRNAs in heart disease.