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类 PLA2 蛋白肌毒性机制:一个动态模型描述。

PLA-like proteins myotoxic mechanism: a dynamic model description.

机构信息

Departamento de Física e Biofísica, Instituto de Biociências, Universidade Estadual Paulista (UNESP), Botucatu, SP, Brazil.

出版信息

Sci Rep. 2017 Nov 14;7(1):15514. doi: 10.1038/s41598-017-15614-z.

Abstract

Phospholipase A-like (PLA-like) proteins contribute to the development of muscle necrosis in Viperidae snake bites and are not efficiently neutralized by current antivenom treatments. The toxic mechanisms of PLA-like proteins are devoid of catalytic activity and not yet fully understood, although structural and functional experiments suggest a dimeric assembly and that the C-terminal residues are essential to myotoxicity. Herein, we characterized the functional mechanism of bothropic PLA-like structures related to global and local measurements using the available models in the Protein Data Bank and normal mode molecular dynamics (NM-MD). Those measurements include: (i) new geometric descriptions between their monomers, based on Euler angles; (ii) characterizations of canonical and non-canonical conformations of the C-terminal residues; (iii) accessibility of the hydrophobic channel; (iv) inspection of ligands; and (v) distance of clustered residues to toxin interface of interaction. Thus, we described the allosteric activation of PLA-like proteins and hypothesized that the natural movement between monomers, calculated from NM-MD, is related to their membrane disruption mechanism, which is important for future studies of the inhibition process. These methods and strategies can be applied to other proteins to help understand their mechanisms of action.

摘要

类磷酯酶 A(PLA-like)蛋白有助于蝰蛇科蛇咬伤导致的肌肉坏死的发展,而目前的抗蛇毒血清治疗并不能有效地中和它们。PLA-like 蛋白的毒性机制缺乏催化活性,目前尚未完全了解,尽管结构和功能实验表明其具有二聚体组装,并且 C 末端残基对肌毒性至关重要。在此,我们使用蛋白质数据库中的现有模型和正常模式分子动力学(NM-MD),对与全局和局部测量相关的两种类磷酯酶 A 结构的功能机制进行了表征。这些测量包括:(i)基于欧拉角的单体之间的新几何描述;(ii)C 末端残基的规范和非规范构象的特征化;(iii)疏水性通道的可及性;(iv)配体检查;和(v)聚集残基到毒素相互作用界面的距离。因此,我们描述了 PLA-like 蛋白的变构激活,并假设 NM-MD 计算出的单体之间的自然运动与它们的膜破坏机制有关,这对于抑制过程的未来研究很重要。这些方法和策略可以应用于其他蛋白质,以帮助了解它们的作用机制。

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