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PIM-1L激酶与SRPK1结合并使其失活:一项生物化学与分子动力学研究。

PIM-1L Kinase Binds to and Inactivates SRPK1: A Biochemical and Molecular Dynamics Study.

作者信息

Lesgidou Nastazia, Koukiali Anastasia, Nikolakaki Eleni, Giannakouros Thomas, Vlassi Metaxia

机构信息

Institute of Biosciences and Applications, National Center for Scientific Research "Demokritos", Athens, Greece.

Laboratory of Biochemistry, Department of Chemistry, Aristotle University, Thessaloniki, Greece.

出版信息

Proteins. 2025 Mar;93(3):629-653. doi: 10.1002/prot.26757. Epub 2024 Oct 27.

Abstract

SR/RS dipeptide repeats vary in both length and position, and are phosphorylated by SR protein kinases (SRPKs). PIM-1L, the long isoform of PIM-1 kinase, the splicing of which has been implicated in acute myeloid leukemia, contains a domain that consists largely of repeating SR/RS and SH/HS dipeptides (SR/SH-rich). In order to extend our knowledge on the specificity and cellular functions of SRPK1, here we investigate whether PIM-1L could act as substrate of SRPK1 by a combination of biochemical and computational approaches. Our biochemical data showed that the SR/SH-rich domain of PIM-1L was able to associate with SRPK1, yet it could not act as a substrate but, instead, inactivated the kinase. In line with our biochemical data, molecular modeling followed by a microsecond-scale all-atom molecular dynamics (MD) simulation suggests that the SR/SH-rich domain acts as a pseudo-docking peptide that binds to the same acidic docking-groove used in other SRPK1 interactions and induces inactive SRPK1 conformations. Comparative community network analysis of the MD trajectories, unraveled the dynamic architecture of apo SRPK1 and notable alterations of allosteric communications upon PIM-1L peptide binding. This analysis also allowed us to identify key SRPK1 residues, including unique ones, with a pivotal role in mediating allosteric signal propagation within the kinase core. Interestingly, most of the identified amino acids correspond to cancer-associated amino acid changes, validating our results. In total, this work provides insights not only on the details of SRPK1 inhibition by the PIM-1L SR/SH-domain, but also contributes to an in-depth understanding of SRPK1 regulation.

摘要

SR/RS二肽重复序列在长度和位置上都有所不同,并由SR蛋白激酶(SRPKs)磷酸化。PIM-1L是PIM-1激酶的长异构体,其剪接与急性髓系白血病有关,它包含一个主要由重复的SR/RS和SH/HS二肽组成的结构域(富含SR/SH)。为了扩展我们对SRPK1特异性和细胞功能的认识,我们通过生化和计算方法相结合的方式研究PIM-1L是否可以作为SRPK1的底物。我们的生化数据表明,PIM-1L富含SR/SH的结构域能够与SRPK1结合,但它不能作为底物,反而使激酶失活。与我们的生化数据一致,分子建模随后进行微秒级全原子分子动力学(MD)模拟表明,富含SR/SH的结构域作为一种假对接肽,与其他SRPK1相互作用中使用的相同酸性对接槽结合,并诱导SRPK1的无活性构象。对MD轨迹的比较群落网络分析揭示了无配体SRPK1的动态结构以及PIM-1L肽结合后变构通讯的显著变化。该分析还使我们能够识别关键的SRPK1残基,包括独特的残基,它们在介导激酶核心内的变构信号传播中起关键作用。有趣的是,大多数鉴定出的氨基酸对应于与癌症相关的氨基酸变化,验证了我们的结果。总的来说,这项工作不仅提供了关于PIM-1L SR/SH结构域抑制SRPK1细节的见解,也有助于深入理解SRPK1的调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6951/11809128/47d0648eb1a2/PROT-93-629-g002.jpg

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