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DNA 如何影响嗜热蛋白 Ape10b2 寡聚化:使用多种短分子动力学模拟进行的研究。

How DNA affects the hyperthermophilic protein Ape10b2 for oligomerization: an investigation using multiple short molecular dynamics simulations.

机构信息

Institute of Theoretical Chemistry, College of Chemistry, Jilin University, Changchun, 130023, People's Republic of China.

Key Laboratory for Molecular Enzymology and Engineering of the Ministry of Education, Jilin University, Changchun, 130023, People's Republic of China.

出版信息

Phys Chem Chem Phys. 2021 Nov 24;23(45):25841-25849. doi: 10.1039/d1cp04341b.

Abstract

Alba2 is a hyperthermophilic DNA-binding protein, and DNA plays a crucial role in the Alba2 oligomerization process. It is a pity that there is limited research in terms of how DNA affects the conformational change of Alba2 in oligomerization. Herein, we complement the crystal structure of the Ape10b2 (belongs to Alba2)-dsDNA complex (PDB ID: 3U6Y) and employ multiple short molecular dynamics (MSMD) simulations to illuminate the influence of DNA on Ape10b2 at four temperatures (300, 343, 363, and 373 K). Our results indicate that DNA could cause the conformational changes of two important regions (loop1 and loop5), which may be beneficial for protein oligomerization. The results of hydrogen bond analysis show that the increasing number of hydrogen bonds between two monomers of Ape10b2 may also be a favorable factor for oligomerization. In addition, Ape10b2 can stabilize DNA by electrostatic interactions with an increase in temperature, and five residues (Arg40, Arg42, Asn43, Asn45, and Arg46) play a stabilizing role during protein binding to DNA. Our findings could help in understanding the favorable factors leading to protein oligomerization, which contributes to enzyme engineering research from an industrial perspective.

摘要

Alba2 是一种嗜热 DNA 结合蛋白,DNA 在 Alba2 寡聚化过程中起着至关重要的作用。遗憾的是,关于 DNA 如何影响 Alba2 在寡聚化过程中的构象变化的研究还很有限。在此,我们补充了 Ape10b2(属于 Alba2)-dsDNA 复合物的晶体结构(PDB ID:3U6Y),并采用多种短分子动力学(MSMD)模拟来阐明 DNA 对四个温度(300、343、363 和 373 K)下的 Ape10b2 的影响。我们的结果表明,DNA 可以引起两个重要区域(loop1 和 loop5)的构象变化,这可能有利于蛋白质寡聚化。氢键分析的结果表明,Ape10b2 两个单体之间氢键数量的增加也可能是寡聚化的有利因素。此外,Ape10b2 可以通过与 DNA 的静电相互作用来稳定 DNA,并且随着温度的升高,五个残基(Arg40、Arg42、Asn43、Asn45 和 Arg46)在蛋白质与 DNA 结合过程中发挥稳定作用。我们的发现有助于理解导致蛋白质寡聚化的有利因素,这有助于从工业角度进行酶工程研究。

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