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PP2B and PP1α cooperatively disrupt 7SK snRNP to release P-TEFb for transcription in response to Ca2+ signaling

机译:PP2B和PP1α协同破坏7SK snRNP从而释放P-TEFb以响应Ca2 +信号转导

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摘要

The positive transcription elongation factor b (P-TEFb), consisting of Cdk9 and cyclin T, stimulates RNA polymerase II elongation and cotranscriptional pre-mRNA processing. To accommodate different growth conditions and transcriptional demands, a reservoir of P-TEFb is kept in an inactive state in the multisubunit 7SK snRNP. Under certain stress or disease conditions, P-TEFb is released to activate transcription, although the signaling pathway(s) that controls this is largely unknown. Here, through analyzing the UV- or hexamethylene bisacetamide (HMBA)-induced release of P-TEFb from 7SK snRNP, an essential role for the calcium ion (Ca2+)–calmodulin–protein phosphatase 2B (PP2B) signaling pathway is revealed. However, Ca2+ signaling alone is insufficient, and PP2B must act sequentially and cooperatively with protein phosphatase 1α (PP1α) to disrupt 7SK snRNP. Activated by UV/HMBA and facilitated by a PP2B-induced conformational change in 7SK snRNP, PP1α releases P-TEFb through dephosphorylating phospho-Thr186 in the Cdk9 T-loop. This event is also necessary for the subsequent recruitment of P-TEFb by the bromodomain protein Brd4 to the preinitiation complex, where Cdk9 remains unphosphorylated and inactive until after the synthesis of a short RNA. Thus, through cooperatively dephosphorylating Cdk9 in response to Ca2+ signaling, PP2B and PP1α alter the P-TEFb functional equilibrium through releasing P-TEFb from 7SK snRNP for transcription.
机译:由Cdk9和细胞周期蛋白T组成的正转录延伸因子b(P-TEFb)刺激RNA聚合酶II延伸和共转录前mRNA加工。为了适应不同的生长条件和转录需求,P-TEFb的储库在多亚基7SK snRNP中保持非活性状态。在某些压力或疾病条件下,P-TEFb被释放以激活转录,尽管控制它的信号传导途径很大程度上是未知的。在这里,通过分析紫外线或六亚甲基双乙酰胺(HMBA)诱导的7SK snRNP释放P-TEFb,钙离子(Ca 2 + )–钙调蛋白–蛋白磷酸酶2B的重要作用( PP2B)信号传导途径被揭示。但是,单独的Ca 2 + 信号不足,PP2B必须与蛋白磷酸酶1α(PP1α)顺序和协同作用才能破坏7SK snRNP。由UV / HMBA激活并受PP2B诱导的7SK snRNP构象变化的促进,PP1α通过使Cdk9 T环中的磷酸Thr186脱磷酸而释放P-TEFb。此事件对于随后的溴结构域蛋白Brd4将P-TEFb募集到预起始复合体也是必需的,在该复合体中Cdk9保持未磷酸化且无活性,直到合成短RNA后为止。因此,通过响应Ca 2 + 信号使Cdk9协同去磷酸化,PP2B和PP1α通过从7SK snRNP释放P-TEFb进行转录来改变P-TEFb功能平衡。

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