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丝氨酸/精氨酸丰富蛋白 SRSF1 的功能与蛋白磷酸酶 1 相连接的分子相互作用。

Molecular interactions connecting the function of the serine-arginine-rich protein SRSF1 to protein phosphatase 1.

机构信息

From the Department of Pharmacology, University of California San Diego, La Jolla, California 92093-0636 and.

the Department of Integrative Structural and Computational Biology and.

出版信息

J Biol Chem. 2018 Oct 26;293(43):16751-16760. doi: 10.1074/jbc.RA118.004587. Epub 2018 Sep 5.

DOI:10.1074/jbc.RA118.004587
PMID:30185622
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6204901/
Abstract

Splicing generates many mRNA strands from a single precursor mRNA, expanding the proteome and enhancing intracellular diversity. Both initial assembly and activation of the spliceosome require an essential family of splicing factors called serine-arginine (SR) proteins. Protein phosphatase 1 (PP1) regulates the SR proteins by controlling phosphorylation of a C-terminal arginine-serine-rich (RS) domain. These modifications are vital for the subcellular localization and mRNA splicing function of the SR protein. Although PP1 has been shown to dephosphorylate the prototype SR protein splicing factor 1 (SRSF1), the molecular nature of this interaction is not understood. Here, using NMR spectroscopy, we identified two electrostatic residues in helix α2 and a hydrophobic residue in helix α1 in the RNA recognition motif 1 (RRM1) of SRSF1 that constitute a binding surface for PP1. Substitution of these residues dissociated SRSF1 from PP1 and enhanced phosphatase activity, reducing phosphorylation in the RS domain. These effects lead to shifts in alternative splicing patterns that parallel increases in SRSF1 diffusion from speckles to the nucleoplasm brought on by regiospecific decreases in RS domain phosphorylation. Overall, these findings establish a molecular and biological connection between PP1-targeted amino acids in an RRM with the phosphorylation state and mRNA-processing function of an SR protein.

摘要

剪接从单个前体 mRNA 产生许多 mRNA 链,从而扩展蛋白质组并增强细胞内多样性。剪接体的初始组装和激活都需要一组称为丝氨酸/精氨酸 (SR) 蛋白的必需剪接因子。蛋白磷酸酶 1 (PP1) 通过控制 C 端精氨酸/丝氨酸丰富 (RS) 结构域的磷酸化来调节 SR 蛋白。这些修饰对于 SR 蛋白的亚细胞定位和 mRNA 剪接功能至关重要。尽管已经表明 PP1 可以去磷酸化原型 SR 蛋白剪接因子 1 (SRSF1),但这种相互作用的分子性质尚不清楚。在这里,我们使用 NMR 光谱学鉴定了 SRSF1 的 RNA 识别基序 1 (RRM1) 中α2 螺旋中的两个静电残基和α1 螺旋中的一个疏水性残基,它们构成了与 PP1 的结合表面。这些残基的取代使 SRSF1 与 PP1 解离,并增强了磷酸酶活性,降低了 RS 结构域的磷酸化。这些效应导致剪接模式发生变化,与由于 RS 结构域磷酸化的区域特异性降低而导致 SRSF1 从斑点扩散到核质引起的扩散增加相平行。总的来说,这些发现确立了 PP1 靶向 RRM 中的氨基酸与 SR 蛋白的磷酸化状态和 mRNA 处理功能之间的分子和生物学联系。

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2
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J Mol Biol. 2017 Jul 7;429(14):2178-2191. doi: 10.1016/j.jmb.2017.05.022. Epub 2017 May 31.
3
SR Proteins: Binders, Regulators, and Connectors of RNA.SR蛋白:RNA的结合蛋白、调控蛋白及连接蛋白
Mol Cells. 2017 Jan;40(1):1-9. doi: 10.14348/molcells.2017.2319. Epub 2017 Jan 26.
4
Directional Phosphorylation and Nuclear Transport of the Splicing Factor SRSF1 Is Regulated by an RNA Recognition Motif.剪接因子SRSF1的定向磷酸化和核转运受RNA识别基序调控。
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5
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6
APSY-NMR for protein backbone assignment in high-throughput structural biology.用于高通量结构生物学中蛋白质主链归属的APSY-NMR
J Biomol NMR. 2015 Jan;61(1):47-53. doi: 10.1007/s10858-014-9881-8. Epub 2014 Nov 27.
7
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Mol Cell. 2012 Aug 10;47(3):422-33. doi: 10.1016/j.molcel.2012.05.014. Epub 2012 Jun 21.
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Applying the brakes to multisite SR protein phosphorylation: substrate-induced effects on the splicing kinase SRPK1.抑制多部位 SR 蛋白磷酸化:底物对剪接激酶 SRPK1 的影响。
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