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首页> 外文期刊>Journal of Molecular Biology >Adaptable molecular interactions guide phosphorylation of the SR protein ASF/SF2 by SRPK1.
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Adaptable molecular interactions guide phosphorylation of the SR protein ASF/SF2 by SRPK1.

机译:适应性分子相互作用指导SRPK1磷酸化SR蛋白ASF / SF2。

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摘要

The SR (arginine-serine rich) protein ASF/SF2 (also called human alternative splicing factor), an essential splicing factor, contains two functional modules consisting of tandem RNA recognition motifs (RRMs; RRM1-RRM2) and a C-terminal arginine-serine repeat region (RS domain, a domain rich in arginine-serine repeats). The SR-specific protein kinase (SRPK) 1 phosphorylates the RS domain at multiple serines using a directional (C-terminal-to-N-terminal) and processive mechanism--a process that directs the SR protein to the nucleus and influences protein-protein interactions associated with splicing function. To investigate how SRPK1 accomplishes this feat, the enzyme-substrate complex was analyzed using single-turnover and multiturnover kinetic methods. Deletion studies revealed that while recognition of the RS domain by a docking groove on SRPK1 is sufficient to initiate the processive and directional mechanism, continued processive phosphorylation in the presence of building repulsive charge relies onthe fine-tuning of contacts with the RRM1-RRM2 module. An electropositive pocket in SRPK1 that stabilizes newly phosphorylated serines enhanced processive phosphorylation of later serines. These data indicate that SRPK1 uses stable, yet highly flexible protein-protein interactions to facilitate both early and late phases of the processive phosphorylation of SR proteins.
机译:SR(富含精氨酸丝氨酸)蛋白ASF / SF2(也称为人类替代剪接因子)是必不可少的剪接因子,包含两个由串联RNA识别基序(RRM; RRM1-RRM2)和C端精氨酸组成的功能模块,丝氨酸重复区(RS结构域,富含精氨酸-丝氨酸重复序列的结构域)。 SR特异性蛋白激酶(SRPK)1使用方向性(C端至N端)和过程机制将多个丝氨酸上的RS结构域磷酸化-该过程将SR蛋白引导至细胞核并影响蛋白-与剪接功能有关的蛋白质相互作用。为了研究SRPK1如何完成这一壮举,使用单周转和多周转动力学方法分析了酶-底物复合物。删除研究表明,尽管通过SRPK1上的对接凹槽识别RS结构域足以启动过程性和方向性机制,但在存在排斥电荷的情况下继续进行过程性磷酸化仍依赖于与RRM1-RRM2模块的接触的微调。 SRPK1中的一个正电袋可稳定新磷酸化的丝氨酸,增强了后来丝氨酸的进行性磷酸化。这些数据表明,SRPK1使用稳定但高度灵活的蛋白质-蛋白质相互作用来促进SR蛋白质进行性磷酸化的早期和晚期。

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