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A proposed signaling motif for nuclear import in mRNA processing via the formation of arginine claw

机译:通过精氨酸爪的形成在mRNA加工中的核输入的拟议信号转导基序

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摘要

Phosphorylation of proteins by kinases is the most commonly studied class of posttranslational modification, yet its structural consequences are not well understood. The human SR (serine-arginine) protein ASF/SF2 relies on the processive phosphorylation of the serine residues of eight consecutive arginine-serine (RS) dipeptide repeats at the C terminus by SRPK1 before it can be transported into the nucleus. This SR protein plays critical roles in spliceosome assembly, pre-mRNA splicing, and mRNA export, and the phosphorylation process of the RS repeats has been extensively studied experimentally. However, knowledge of the conformational changes associated with the phosphorylation of this simple sequence and how it triggers the importation of the SR protein is lacking. Here, we have carried out extensive molecular dynamics simulations to show that phosphorylation of the eight RS repeats significantly alters the peptide's conformation and leads to the formation of very stable structures that are likely to be involved in the recognition, binding, and transport of the SR protein. Specifically, we found an unusual symmetry-broken phase of conformations of the repetitive and quasi-symmetric phosphorylated peptide sequence. One of the main characteristics of these conformations is the exposed phosphate groups on the periphery, which possibly could serve as the recognition platform for the transport protein transportin-SR2.
机译:激酶将蛋白质磷酸化是翻译后修饰中最常研究的一类,但其结构后果尚不十分清楚。人类SR(丝氨酸-精氨酸)蛋白ASF / SF2依赖于SRPK1在C末端重复出现的八个连续的精氨酸-丝氨酸(RS)二肽重复序列的丝氨酸残基进行磷酸化,然后才能被转运到细胞核中。这种SR蛋白在剪接体组装,mRNA前剪接和mRNA输出中起着关键作用,并且对RS重复序列的磷酸化过程进行了广泛的实验研究。然而,缺乏与该简单序列的磷酸化相关的构象变化及其如何触发SR蛋白导入的知识。在这里,我们进行了广泛的分子动力学模拟,显示八个RS重复序列的磷酸化显着改变了肽的构象,并导致形成非常稳定的结构,该结构可能与SR的识别,结合和转运有关。蛋白。具体而言,我们发现了重复的和准对称的磷酸化肽序列的构象的不寻常的对称破坏相。这些构象的主要特征之一是在外围暴露的磷酸基团,其可能可以用作转运蛋白transportin-SR2的识别平台。

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