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深入了解分泌型磷脂酶A家族成员的共同特性、差异动力学及特异性

Insight into Shared Properties and Differential Dynamics and Specificity of Secretory Phospholipase A Family Members.

作者信息

Zhang Shan, Gong Weikang, Han Zhongjie, Liu Yang, Li Chunhua

机构信息

Faculty of Environmental and Life Sciences, Beijing University of Technology, Beijing 100124, China.

出版信息

J Phys Chem B. 2021 Apr 8;125(13):3353-3363. doi: 10.1021/acs.jpcb.1c01315. Epub 2021 Mar 29.

Abstract

Understanding generic mechanisms of functions shared by the secretory phospholipase A (sPLA) family involved in the lipid metabolism and cell signaling and the molecular basis of function specificity for family members is an intriguing but challenging problem for biologists. Here, we explore the issue through extensive analyses using a combination of structure-based methods and bioinformatics tools on130 sPLA family members. The principal component analysis of the structure ensemble reveals that the enzyme has an open-close motion which helps widen the substrate binding channel, facilitating its binding to phospholipid. Performing elastic network model and sequence analyses found that the residues critical for family functions, such as cysteine and catalytic residues, are highly conserved and undergo minimal movements, which is evolutionarily essential as their perturbation would impact the function, while the four residue regions involved in the association with the calcium ion/membrane are lowly conserved and of high mobility and large variations in low-to-intermediate frequency modes, which reflects the specificity of members. The analyses from perturbation response scanning also reveal that the above four regions with high sensitivity to an external perturbation are member-specific, suggesting their different roles in allosteric modulation, while the minimal sensitive residues are the shared characteristics across family members, which play an important role in maintaining structural stability as the folding core. This study is helpful for understanding how sequences, structures, and dynamics of sPLA family members evolve to ensure their common and specific functions and can provide a guide for accurate design of proteins with finely tuned activities.

摘要

了解分泌型磷脂酶A(sPLA)家族在脂质代谢和细胞信号传导中共享功能的通用机制以及家族成员功能特异性的分子基础,对生物学家来说是一个有趣但具有挑战性的问题。在这里,我们通过对130个sPLA家族成员结合基于结构的方法和生物信息学工具进行广泛分析来探讨这个问题。对结构集合的主成分分析表明,该酶具有开闭运动,这有助于拓宽底物结合通道,促进其与磷脂的结合。进行弹性网络模型和序列分析发现,对家族功能至关重要的残基,如半胱氨酸和催化残基,高度保守且运动极小,这在进化上至关重要,因为它们的扰动会影响功能,而与钙离子/膜结合相关的四个残基区域保守性低、流动性高且在低频到中频模式下变化很大,这反映了成员的特异性。扰动响应扫描分析还表明,上述对外部扰动高度敏感的四个区域是成员特异性的,表明它们在变构调节中的不同作用,而最小敏感残基是家族成员共有的特征,它们作为折叠核心在维持结构稳定性方面发挥重要作用。这项研究有助于理解sPLA家族成员的序列、结构和动力学如何进化以确保其共同和特定功能,并可为精确设计具有精细调节活性的蛋白质提供指导。

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