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通过分子动力学模拟研究鉴定丝氨酸-精氨酸蛋白激酶-1 的热点残基。

Identification of hot spot residues on serine-arginine protein kinase-1 by molecular dynamics simulation studies.

机构信息

School of Biotechnology, Gautam Buddha University, Greater Noida, Uttar Pradesh, India.

出版信息

J Biomol Struct Dyn. 2021 Mar;39(5):1579-1587. doi: 10.1080/07391102.2020.1734487. Epub 2020 Mar 4.

Abstract

Serine-arginine protein kinase-1 (SRPK1) is a highly specific kinase that recognizes serine-arginine dipeptide repeats and phosphorylates SR rich splicing factor ASF/SF2 in a cell-cycle regulated manner. SRPK1 processively phosphorylates serine residues on its substrate ASF/SF2. Elevated expression pattern of both SRPK1 and ASF/SF2 and their association with various carcinomas have established SRPK1 as a potent target for drug design against cancers. In order to develop specific inhibitors the binding of ASF/SF2 to SRPK1 is desired to be selectively interrupted. We have performed molecular dynamics simulation studies on crystal structure of SRPK1 complex with ASF/SF2. The ASF/SF2 acquired a stable binding on the surface of SRPK1 with strong attractive forces. Analysis revealed that there was no major position shifting of the core β-sheet region within the catalytic site of SRPK1 when present in the state of ASF/SF2 bound in comparison to apo form. Global motions of SRPK1 indicated that major stable structural changes occurred after the substrate binding. The interactions between SRPK1 and ASF/SF2 were examined and calculated during molecular dynamics simulation of 1 µs. Molecular dynamics study indicated Arg84, Lys85, Leu86, Lys174, Tyr227 and Leu479 residues of SRPK1 as essential hot spots involved in the stable binding with substrate. Structural analysis of the binding affinity and hot spot investigation provided significant information on ASF/SF2 binding which may also be considered for designing of the novel specific inhibitors of SRPK1 for the applications in cancer therapy.Communicated by Ramaswamy H. Sarma.

摘要

丝氨酸-精氨酸蛋白激酶-1(SRPK1)是一种高度特异性的激酶,可识别丝氨酸-精氨酸二肽重复序列,并以细胞周期调控的方式磷酸化富含丝氨酸的剪接因子 ASF/SF2。SRPK1 连续磷酸化其底物 ASF/SF2 上的丝氨酸残基。SRPK1 和 ASF/SF2 的表达水平升高及其与各种癌症的关联,使 SRPK1 成为癌症药物设计的有效靶点。为了开发特异性抑制剂,希望选择性地打断 ASF/SF2 与 SRPK1 的结合。我们对 SRPK1 与 ASF/SF2 复合物的晶体结构进行了分子动力学模拟研究。ASF/SF2 在 SRPK1 表面获得了稳定的结合,具有很强的吸引力。分析表明,与无配体形式相比,当存在结合的 ASF/SF2 时,SRPK1 催化位点内的核心 β-折叠区没有发生主要的位置移动。SRPK1 的整体运动表明,在底物结合后发生了主要的稳定结构变化。在 1µs 的分子动力学模拟中,检查并计算了 SRPK1 和 ASF/SF2 之间的相互作用。分子动力学研究表明,SRPK1 的 Arg84、Lys85、Leu86、Lys174、Tyr227 和 Leu479 残基是与底物稳定结合所必需的热点。结合亲和力的结构分析和热点研究提供了关于 ASF/SF2 结合的重要信息,这也可用于设计新型特异性 SRPK1 抑制剂,用于癌症治疗。由 Ramaswamy H. Sarma 传达。

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