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热休克蛋白 27(Hsp27)-神经酰胺合酶(Cers1)蛋白-蛋白相互作用为探索新的抗癌机制和治疗方法提供了新途径。

Heat shock protein (Hsp27)-ceramide synthase (Cers1) protein-protein interactions provide a new avenue for unexplored anti-cancer mechanism and therapy.

机构信息

Molecular Bio-Computation and Drug Design Research Group, School of Health Sciences, University of KwaZulu Natal, Durban, South Africa.

School of Chemistry, Dalian University of Technology, Dalian, Liaoning, China.

出版信息

J Recept Signal Transduct Res. 2024 Apr;44(2):41-53. doi: 10.1080/10799893.2024.2392711. Epub 2024 Aug 27.

Abstract

Hsp27 is a member of the small heat-shock proteins (sHSPs) - the known cellular line of defence against abnormal protein folding behaviors. Nevertheless, its upregulation is linked to a variety of pathological disorders, including several types of cancers. The ceramide synthases (CerS) mediate the synthesis of ceramide, a critical structural and signaling lipid. Functionally, downstream ceramide metabolites are implicated in the apoptosis process and their abnormal functionality has been linked to anticancer resistance. Studies showed that CerS1 are possibly inhibited by Hsp27 leading to biochemical anticancer effects . Nevertheless, the nature of such protein-protein interaction (PPI) has not been considerably investigated in molecular terms, hence, we present the first description of the dynamics CerS1-Hsp27 interaction landscapes using molecular dynamics simulations. Time-scale molecular dynamics simulation analysis indicated a system-wide conformational events of decreased stability, increased flexibility, reduced compactness, and decreased folding of CerS1. Analysis of binding energy showed a favorable interaction entailing 56 residues at the interface and a total stabilizing energy of -158 KJ/mol. The CerS1 catalytic domain experienced an opposite trend compared to the protein backbone. Yet, these residues adopted a highly compact conformation as per DCCM and DSSP analysis. Furthermore, conserved residues (SER 212, ASP 213, ALA 240, GLY 243, ASP 319) comprising the substrate shuttling machinery showed notable rigidity implying a restrained ceramide precursor access and assembly; hence, a possible inhibitory mechanism. Findings from this report would streamline a better molecular understanding of CerS1-Hsp27 interactions and decipher its potential avenue toward unexplored anti-cancer mechanisms and therapy.

摘要

热休克蛋白 27(Hsp27)是小分子热休克蛋白(sHSPs)的成员,是已知的细胞防御异常蛋白折叠行为的防线。然而,其上调与多种病理疾病有关,包括多种类型的癌症。神经酰胺合酶(CerS)介导神经酰胺的合成,神经酰胺是一种关键的结构和信号脂质。从功能上讲,下游神经酰胺代谢物参与细胞凋亡过程,其异常功能与抗癌耐药性有关。研究表明,Hsp27 可能抑制 CerS1,从而产生生化抗癌作用。然而,这种蛋白质-蛋白质相互作用(PPI)的性质尚未在分子水平上得到充分研究,因此,我们首次使用分子动力学模拟描述了 CerS1-Hsp27 相互作用的动态景观。时间尺度分子动力学模拟分析表明,整个系统的构象稳定性降低、柔韧性增加、紧凑性降低和折叠性降低。结合能分析表明,这种相互作用有利于在界面上涉及 56 个残基的相互作用,总稳定能为-158 KJ/mol。与蛋白质骨架相比,CerS1 的催化结构域呈现出相反的趋势。然而,根据 DCCM 和 DSSP 分析,这些残基采用了高度紧凑的构象。此外,包含底物穿梭机制的保守残基(SER 212、ASP 213、ALA 240、GLY 243、ASP 319)表现出明显的刚性,这意味着受限制的神经酰胺前体进入和组装;因此,这可能是一种抑制机制。本报告的研究结果将简化对 CerS1-Hsp27 相互作用的更好的分子理解,并阐明其潜在的途径,以探索新的抗癌机制和治疗方法。

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