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αNAC与组蛋白去乙酰化酶共抑制因子相互作用,以控制肌细胞生成素和骨钙素基因的表达。

αNAC interacts with histone deacetylase corepressors to control Myogenin and Osteocalcin gene expression.

作者信息

Jafarov Toghrul, Alexander James W M, St-Arnaud René

机构信息

Shriners Hospital for Children, Canada.

出版信息

Biochim Biophys Acta. 2012 Nov-Dec;1819(11-12):1208-16. doi: 10.1016/j.bbagrm.2012.10.005. Epub 2012 Oct 22.

Abstract

In the nucleus of differentiated osteoblasts, the DNA-binding αNAC protein acts as a transcriptional coactivator of the Osteocalcin gene. Chromatin immunoprecipitation-microarray assays (ChIP-chip) showed that αNAC binds the Osteocalcin promoter but also identified the Myogenin promoter as an αNAC target. Here, we confirm these array data using quantitative ChIP and further detected that αNAC binds to these promoters in myoblasts. Since these genes are differentially regulated during osteoblastogenesis or myogenesis, these results suggest cell- and promoter-context specific functions for αNAC. We hypothesized that αNAC dynamically recruits corepressors to inhibit Myogenin expression in cells committing to the osteoblastic lineage or to inhibit Osteocalcin transcription in differentiating myoblasts. Using co-immunoprecipitation assays, we detected complexes between αNAC and the corepressors HDAC1 and HDAC3, in myoblasts and osteoblasts. Sequential ChIP confirmed HDAC1 recruitment by αNAC at the Osteocalcin and Myogenin promoters. Interaction with the corepressors was detectable in pre-osteoblasts and in myoblasts but disappeared as the cells differentiate. Treatment with an HDAC inhibitor caused de-repression of Osteocalcin expression in myoblasts. Overexpression of αNAC in myoblasts inhibits expression of Myogenin and differentiation. However, overexpression of an N-terminus truncated αNAC mutant allowed myoblasts to express Myogenin and differentiate, and this mutant did not interact with HDAC1 or HDAC3. This study identified an additional DNA-binding target and novel protein-protein interactions for αNAC. We propose that αNAC plays a role in regulating gene transcription during mesenchymal cell differentiation by differentially recruiting corepressors at target promoters.

摘要

在分化的成骨细胞的细胞核中,DNA结合蛋白αNAC作为骨钙素基因的转录共激活因子。染色质免疫沉淀-微阵列分析(ChIP-chip)表明,αNAC结合骨钙素启动子,但也确定肌细胞生成素启动子是αNAC的一个靶点。在这里,我们使用定量ChIP证实了这些阵列数据,并进一步检测到αNAC在成肌细胞中与这些启动子结合。由于这些基因在成骨细胞生成或肌细胞生成过程中受到不同的调控,这些结果表明αNAC具有细胞和启动子背景特异性功能。我们假设,αNAC动态招募共抑制因子,以抑制向成骨细胞谱系分化的细胞中肌细胞生成素的表达,或抑制分化的成肌细胞中骨钙素的转录。通过免疫共沉淀分析,我们在成肌细胞和成骨细胞中检测到αNAC与共抑制因子HDAC1和HDAC3之间的复合物。连续ChIP证实αNAC在骨钙素和肌细胞生成素启动子处招募HDAC1。在成骨前体细胞和成肌细胞中可检测到与共抑制因子的相互作用,但随着细胞分化而消失。用HDAC抑制剂处理导致成肌细胞中骨钙素表达的去抑制。αNAC在成肌细胞中的过表达抑制肌细胞生成素的表达和分化。然而,N端截短的αNAC突变体的过表达使成肌细胞能够表达肌细胞生成素并分化,并且该突变体不与HDAC1或HDAC3相互作用。这项研究确定了αNAC的另一个DNA结合靶点和新的蛋白质-蛋白质相互作用。我们提出,αNAC通过在靶启动子处差异招募共抑制因子,在间充质细胞分化过程中调节基因转录。

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