探索 A22 与原核肌动蛋白 MreB 和真核肌动蛋白的分子相互作用:计算与实验研究。

IF 2.8 2区 化学 Q3 CHEMISTRY, PHYSICAL
The Journal of Physical Chemistry B Pub Date : 2024-10-31 Epub Date: 2024-10-16 DOI:10.1021/acs.jpcb.4c02963
Anuj Kumar, Samiksha Kukal, Anusha Marepalli, Saran Kumar, Sutharsan Govindarajan, Debabrata Pramanik
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引用次数: 0

摘要

肌动蛋白是一种主要的细胞骨架系统,介导着细胞内大分子的复杂组织。细菌细胞骨架蛋白 MreB 是一种原核类肌动蛋白,在包括病原体在内的许多杆状细菌中负责细胞形状和细胞内组织。MreB 是抗生素开发的目标,A22 及其类似物 MP265 等化合物已被确定为 MreB 的强效抑制剂。细菌肌动蛋白 MreB 与真核生物肌动蛋白尽管缺乏序列相似性,但在结构上具有同源性。目前还不清楚抑制 MreB 的小分子是否能对真核生物肌动蛋白产生作用,因为它们的结构相似。在本研究中,我们通过分子动力学方法研究了 A22 及其类似物 MP265 与 MreB 和真核肌动蛋白之间的分子相互作用。通过使用全原子模型进行 MD 模拟和自由能计算,我们揭示了 A22 和 MP265 与 MreB 的强相互作用,并观察到 A22 和 MP265 与真核肌动蛋白有很强的结合亲和力。实验测定揭示了 A22 对真核细胞(包括酵母和人类胶质母细胞瘤细胞)的毒性。显微镜分析表明了 A22 对人类胶质母细胞瘤细胞肌动蛋白组织的深刻影响。这项计算与实验相结合的研究为 A22 的作用模式提供了新的见解,凸显了它作为探究原核和真核肌动蛋白动态的多功能工具的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Probing the Molecular Interactions of A22 with Prokaryotic Actin MreB and Eukaryotic Actin: A Computational and Experimental Study.

Actin is a major cytoskeletal system that mediates the intricate organization of macromolecules within cells. The bacterial cytoskeletal protein MreB is a prokaryotic actin-like protein governing the cell shape and intracellular organization in many rod-shaped bacteria, including pathogens. MreB stands as a target for antibiotic development, and compounds like A22 and its analogue, MP265, are identified as potent inhibitors of MreB. The bacterial actin MreB shares structural homology with eukaryotic actin despite lacking sequence similarity. It is currently not clear whether small molecules that inhibit MreB can act on eukaryotic actin due to their structural similarity. In this study, we investigate the molecular interactions between A22 and its analogue MP265 with MreB and eukaryotic actin through a molecular dynamics approach. Employing MD simulations and free energy calculations with an all-atom model, we unveil the robust interaction of A22 and MP265 with MreB, and substantial binding affinity is observed for A22 and MP265 with eukaryotic actin. Experimental assays reveal A22's toxicity to eukaryotic cells, including yeast and human glioblastoma cells. Microscopy analysis demonstrates the profound effects of A22 on actin organization in human glioblastoma cells. This integrative computational and experimental study provides new insights into A22's mode of action, highlighting its potential as a versatile tool for probing the dynamics of both prokaryotic and eukaryotic actins.

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来源期刊
CiteScore
5.80
自引率
9.10%
发文量
965
审稿时长
1.6 months
期刊介绍: An essential criterion for acceptance of research articles in the journal is that they provide new physical insight. Please refer to the New Physical Insights virtual issue on what constitutes new physical insight. Manuscripts that are essentially reporting data or applications of data are, in general, not suitable for publication in JPC B.
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