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- W2342660703 endingPage "219" @default.
- W2342660703 startingPage "209" @default.
- W2342660703 abstract "Skeletal muscle formation in vertebrates is derived from the paraxial mesoderm, which develops into myogenic precursor cells and finally differentiates into mature myofibers. This myogenic program involves temporal-spatial molecular events performed by transcription regulators (such as members of the Pax, MRFs and Six families) and signaling pathways (such as Wnts, BMP and Shh signaling). Epigenetic regulation, including histone post-translational modifications is crucial for controlling gene expression through recruitment of various chromatin-modifying enzymes that alter chromatin dynamics during myogenesis. The chromatin modifying enzymes are also recruited at regions of muscle gene regulation, coordinating transcription regulators to influence gene expression. In particular, the reversible methylation status of histone N-terminal tails provides the important regulatory mechanisms in either activation or repression of muscle genes. In this report, we review the recent literatures to deduce mechanisms underlying the epigenetic regulation of gene expression with a focus on histone methylation modification during embryo myogenesis and adult muscle regeneration. Recent results from different histone methylation/demethylation modifications have increased our understanding about the highly intricate layers of epigenetic regulations involved in myogenesis and cross-talk of histone enzymes with the muscle-specific transcriptional machinery." @default.
- W2342660703 created "2016-06-24" @default.
- W2342660703 creator A5019217317 @default.
- W2342660703 creator A5063407668 @default.
- W2342660703 creator A5077459413 @default.
- W2342660703 date "2016-07-01" @default.
- W2342660703 modified "2023-10-16" @default.
- W2342660703 title "The epigenetic regulation of embryonic myogenesis and adult muscle regeneration by histone methylation modification" @default.
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