Institute of Biochemistry, Medical Faculty, Friedrichstrasse 24, Justus-Liebig-University, 35392 Giessen, Germany.
Nucleic Acids Res. 2013 Jun;41(11):5731-45. doi: 10.1093/nar/gkt262. Epub 2013 Apr 24.
Differentiation of skeletal muscle cells is accompanied by drastic changes in gene expression programs that depend on activation and repression of genes at defined time points. Here we identify the serine/threonine kinase homeodomain-interacting protein kinase 2 (HIPK2) as a corepressor that inhibits myocyte enhancer factor 2 (MEF2)-dependent gene expression in undifferentiated myoblasts. Downregulation of HIPK2 expression by shRNAs results in elevated expression of muscle-specific genes, whereas overexpression of the kinase dampens transcription of these genes. HIPK2 is constitutively associated with a multi-protein complex containing histone deacetylase (HDAC)3 and HDAC4 that serves to silence MEF2C-dependent transcription in undifferentiated myoblasts. HIPK2 interferes with gene expression on phosphorylation and HDAC3-dependent deacetylation of MEF2C. Ongoing muscle differentiation is accompanied by elevated caspase activity, which results in caspase-mediated cleavage of HIPK2 following aspartic acids 916 and 977 and the generation of a C-terminally truncated HIPK2 protein. The short form of the kinase loses its affinity to the repressive multi-protein complex and its ability to bind HDAC3 and HDAC4, thus alleviating its repressive function for expression of muscle genes. This study identifies HIPK2 as a further protein that determines the threshold and kinetics of gene expression in proliferating myoblasts and during the initial steps of myogenesis.
骨骼肌细胞的分化伴随着基因表达程序的剧烈变化,这些变化依赖于基因在特定时间点的激活和抑制。在这里,我们确定丝氨酸/苏氨酸激酶同源域相互作用蛋白激酶 2(HIPK2)是一种核心抑制剂,可抑制未分化的成肌细胞中肌细胞增强因子 2(MEF2)依赖性基因表达。通过 shRNA 下调 HIPK2 的表达会导致肌肉特异性基因的表达升高,而激酶的过表达会抑制这些基因的转录。HIPK2 与包含组蛋白脱乙酰酶(HDAC)3 和 HDAC4 的多蛋白复合物持续相关,该复合物在未分化的成肌细胞中沉默 MEF2C 依赖性转录。HIPK2 通过磷酸化和 HDAC3 依赖性脱乙酰化 MEF2C 来干扰基因表达。持续的肌肉分化伴随着 caspase 活性的升高,这导致 caspase 介导的 HIPK2 在天冬氨酸 916 和 977 处的切割和 C 端截断的 HIPK2 蛋白的产生。激酶的短形式失去了与抑制性多蛋白复合物的亲和力及其与 HDAC3 和 HDAC4 的结合能力,从而减轻了其对肌肉基因表达的抑制功能。这项研究确定 HIPK2 是另一种在增殖的成肌细胞中以及在肌发生的初始步骤中决定基因表达阈值和动力学的蛋白质。