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首页> 外文期刊>The Journal of biological chemistry >Coordinated Regulation of Transcription Factor Bcl11b Activity in Thymocytes by the Mitogen-activated Protein Kinase (MAPK) Pathways and Protein Sumoylation
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Coordinated Regulation of Transcription Factor Bcl11b Activity in Thymocytes by the Mitogen-activated Protein Kinase (MAPK) Pathways and Protein Sumoylation

机译:促丝裂解性蛋白激酶(MAPK)途径和蛋白质平等的促旋转蛋白转录因子Bcl11b活性的协调调节

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The transcriptional regulatory protein Bcl11b is essential for T-cell development. We have discovered a dynamic, MAPK-regulated pathway involving sequential, linked, and reversible post-translational modifications of Bcl11b in thymocytes. MAPK-mediated phosphorylation of Bcl11b was coupled to its rapid desumoylation, which was followed by a subsequent cycle of dephosphorylation and resumoylation. Additionally and notably, we report the first instance of direct identification by mass spectrometry of a site of small ubiquitin-like modifier (SUMO) adduction, Lys-679 of Bcl11b, in a protein isolated from a native, mammalian cell. Sumoylation of Bcl11b resulted in recruitment of the transcriptional co-activator p300 to a Bcl11b-repressed promoter with subsequent induction of transcription. Prolonged treatment of native thymocytes with phorbol 12,13-dibutyrate together with the calcium ionophore A23187 also promoted ubiquitination and proteasomal degradation of Bcl11b, providing a mechanism for signal termination. A Bcl11b phospho-deSUMO switch was identified, the basis of which was phosphorylation-dependent recruitment of the SUMO hydrolase SENP1 to phospho-Bcl11b, coupled to hydrolysis of SUMO-Bcl11b. These results define a regulatory pathway in thymocytes that includes the MAPK pathways and upstream signaling components, Bcl11b and the associated nucleosome remodeling and deacetylation (NuRD) complex, SENP proteins, the Bcl11b protein phosphatase 6, the sumoylation machinery, the histone acetyltransferase p300, and downstream transcriptional machinery. This pathway appears to facilitate derepression of repressed Bcl11b target genes as immature thymocytes initiate differentiation programs, biochemically linking MAPK signaling with the latter stages of T-cell development.
机译:转录调节蛋白Bcl11b对于T细胞发育至关重要。我们已经发现了一种动态,MAPK调节的途径,涉及顺序,链接和可逆的BCL11B在胸腺细胞中的翻译后修饰。 MAPK介导的BCL11B的磷酸化与其快速的脱脱合金相偶联,然后进行后续的去磷酸化和RespupoOf的循环。另外并且特别是,我们在从天然哺乳动物细胞中分离的蛋白质中,通过小泛素样改性剂(SUMO)内膜(SUMO)内膜(SUMO)相继,BCL11B的Lys-679的位点直接鉴定的第一例。 BCL11B的Sumoylation导致转录共激活剂P300募集到BCL11B-抑制促进剂,随后诱导转录。延长用Phorbol 12,13-二丁酸酯与钙离子孔A23187的延长处理,也促进了BCL11B的普发化和蛋白酶体降解,提供了信号终止的机制。鉴定了BCL11B磷酸-Demumo开关,其基础是依赖于Sumo-Bcl11b的Sumo水解酶SeNP1的磷酸化依赖性募集,其偶联至Sumo-Bcl11b的水解。这些结果定义了胸腺细胞的调节途径,包括MAPK途径和上游信号分量,BCL11B和相关的核小体重塑和脱乙酰化(NURD)复合物,SENP蛋白,BCL11B蛋白磷酸酶6,Sublation机械,组蛋白乙酰转移酶P300和下游转录机械。该途径似乎促进了压抑的Bcl11b靶基因的DERE倾向于未成熟的胸腺细胞,引发分化计划,与T细胞显影的后一级生物化学地连接MAPK信号。

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