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p38α丝裂原活化蛋白激酶消除KMT1A介导的对肌源性分化程序的抑制作用。

p38α MAPK disables KMT1A-mediated repression of myogenic differentiation program.

作者信息

Chatterjee Biswanath, Wolff David W, Jothi Mathivanan, Mal Munmun, Mal Asoke K

机构信息

Department of Cell Stress Biology, CGP-L3-319, Roswell Park Cancer Institute, Elm and Carlton Streets, Buffalo, New York 14263 USA ; Present Address: Institute of Molecular Biology, Academia Sinica, Nankang, Taipei, 11529 Taiwan.

Department of Cell Stress Biology, CGP-L3-319, Roswell Park Cancer Institute, Elm and Carlton Streets, Buffalo, New York 14263 USA.

出版信息

Skelet Muscle. 2016 Aug 22;6:28. doi: 10.1186/s13395-016-0100-z. eCollection 2016.

Abstract

BACKGROUND

Master transcription factor MyoD can initiate the entire myogenic gene expression program which differentiates proliferating myoblasts into multinucleated myotubes. We previously demonstrated that histone methyltransferase KMT1A associates with and inhibits MyoD in proliferating myoblasts, and must be removed to allow differentiation to proceed. It is known that pro-myogenic signaling pathways such as PI3K/AKT and p38α MAPK play critical roles in enforcing associations between MyoD and transcriptional activators, while removing repressors. However, the mechanism which displaces KMT1A from MyoD, and the signals responsible, remain unknown.

METHODS

To investigate the role of p38α on MyoD-mediated differentiation, we utilized C2C12 myoblast cells as an in vitro model. p38α activity was either augmented via overexpression of a constitutively active upstream kinase or blocked via lentiviral delivery of a specific p38α shRNA or treatment with p38α/β inhibitor SB203580. Overexpression of KMT1A in these cells via lentiviral delivery was also used as a system wherein terminal differentiation is impeded by high levels of KMT1A.

RESULTS

The association of KMT1A and MyoD persisted, and differentiation was blocked in C2C12 myoblasts specifically after pharmacologic or genetic blockade of p38α. Conversely, forced activation of p38α was sufficient to activate MyoD and overcome the differentiation blockade in KMT1A-overexpressing C2C12 cells. Consistent with this finding, KMT1A phosphorylation during C2C12 differentiation correlated strongly with the activation of p38α. This phosphorylation was prevented by the inhibition of p38α. Biochemical studies further revealed that KMT1A can be a direct substrate for p38α. Importantly, chromatin immunoprecipitation (ChIP) studies show that the removal of KMT1A-mediated transcription repressive histone tri-methylation (H3K9me3) from the promoter of the Myogenin gene, a critical regulator of muscle differentiation, is dependent on p38α activity in C2C12 cells. Elevated p38α activity was also sufficient to remove this repressive H3K9me3 mark. Moreover, ChIP studies from C2C12 cells show that p38α activity is necessary and sufficient to establish active H3K9 acetylation on the Myogenin promoter.

CONCLUSIONS

Activation of p38α displaces KMT1A from MyoD to initiate myogenic gene expression upon induction of myoblasts differentiation.

摘要

背景

主转录因子MyoD可启动整个生肌基因表达程序,该程序将增殖的成肌细胞分化为多核肌管。我们之前证明,组蛋白甲基转移酶KMT1A在增殖的成肌细胞中与MyoD结合并抑制MyoD,且必须被去除才能使分化继续进行。已知促生肌信号通路,如PI3K/AKT和p38α MAPK,在加强MyoD与转录激活因子之间的结合以及去除阻遏物方面发挥关键作用。然而,将KMT1A从MyoD上置换下来的机制以及负责的信号仍然未知。

方法

为了研究p38α在MyoD介导的分化中的作用,我们利用C2C12成肌细胞作为体外模型。通过组成型活性上游激酶的过表达增强p38α活性,或者通过慢病毒递送特异性p38α短发夹RNA或用p38α/β抑制剂SB203580处理来阻断p38α活性。通过慢病毒递送在这些细胞中过表达KMT1A也被用作一个系统,其中高水平的KMT1A会阻碍终末分化。

结果

KMT1A与MyoD的结合持续存在,并且在对p38α进行药理学或基因阻断后,C2C12成肌细胞中的分化被阻断。相反,p38α的强制激活足以激活MyoD并克服KMT1A过表达的C2C12细胞中的分化阻断。与这一发现一致,C2C12分化过程中KMT1A的磷酸化与p38α的激活密切相关。这种磷酸化可通过抑制p38α来防止。生化研究进一步表明,KMT1A可以是p38α的直接底物。重要的是,染色质免疫沉淀(ChIP)研究表明,从肌生成素基因启动子上去除KMT1A介导的转录抑制性组蛋白三甲基化(H3K9me3),肌生成素基因是肌肉分化的关键调节因子,这依赖于C2C12细胞中的p38α活性。升高的p38α活性也足以去除这种抑制性H3K9me3标记。此外,来自C2C12细胞的ChIP研究表明,p38α活性对于在肌生成素启动子上建立活性H3K9乙酰化是必要且充分的。

结论

p38α的激活将KMT1A从MyoD上置换下来,从而在成肌细胞分化诱导时启动生肌基因表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9189/4993004/acbcf94f5495/13395_2016_100_Fig1_HTML.jpg

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