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班氏丝虫天冬氨酸β-半醛脱氢酶(WBmDapE)的结构见解及强效抗丝虫抑制剂的解析:一种前沿的计算方法

Structural insights of WBmDapE and deciphering of potent anti-filarial inhibitors: a state-of-art computational approach.

作者信息

Saritha Poopandi, Hemavathy Nagarajan, Sneha Subramaniyan, Prabhu Dhamodharan, Umashankar Vetrivel, Jeyakanthan Jeyaraman

机构信息

Structural Biology and Bio-Computing Lab, Department of Bioinformatics, Alagappa University, Science Block, Karaikudi, 630 003, Tamil Nadu, India.

Centre for Drug Discovery, Department of Biotechnology, Karpagam Academy of Higher Education, Coimbatore, Tamil Nadu, India.

出版信息

Mol Divers. 2025 May 11. doi: 10.1007/s11030-025-11207-5.

Abstract

Lymphatic filariasis (LF) stands as a debilitating tropical ailment, impacting a considerable global populace. Existing drug therapies for LF exhibit limited effectiveness across all parasite stages, thereby accentuating the imperative for novel anti-filarial medications characterized by enhanced prognostic attributes and minimized adverse reactions. A promising avenue involves targeting the microbial enzyme WBmDapE, pivotal in worm survival and intricately linked to the lysine biosynthetic pathway and peptidoglycan cell wall construction. This investigation employs in silico methodologies encompassing molecular docking, Molecular Dynamics Simulation (MDS), conformational analysis, Shape-Based Virtual Screening (SBVS), ADMETox, MMGBSA, and Density Functional Theory (DFT) calculations to discern potential inhibitors of WBmDapE. Through discerning the conformational shifts of the WBmDapE-bound substrate and product, key amino acids implicated in substrate binding (Arg182 and Asp248) are unveiled. While the apo and substrate-bound structures exhibit an open conformation, the product-bound structure displays marked conformational alterations, including shifts within the catalytic domain and the cofactor in the dimerization domain, suggestive of an active and closed conformation. From the prism of shape-based virtual screening, two preeminent compounds (ZINC42784280 and ZINC84308049) have surfaced as potential hits. These compounds evince heightened binding affinity, optimal binding free energy, pivotal hydrogen bond interactions, and akin attributes to the product-bound complex. Subsequently, these compounds emerge as prospective candidates for filariasis treatment. In summation, our study furnishes invaluable insights into the fabrication of innovative WBmDapE inhibitors, potentially serving as anti-filarial agents. Rigorous experimental substantiation and fine-tuning of these compounds are requisite for prospective therapeutic interventions against LF.

摘要

淋巴丝虫病(LF)是一种使人衰弱的热带疾病,影响着全球相当多的人口。现有的LF药物疗法在所有寄生虫阶段的疗效都有限,因此,开发具有更好预后特性和最小不良反应的新型抗丝虫药物迫在眉睫。一个有前景的途径是靶向微生物酶WBmDapE,它对蠕虫的生存至关重要,并且与赖氨酸生物合成途径和肽聚糖细胞壁构建密切相关。本研究采用包括分子对接、分子动力学模拟(MDS)、构象分析、基于形状的虚拟筛选(SBVS)、ADMETox、MMGBSA和密度泛函理论(DFT)计算在内的计算机方法,以识别WBmDapE的潜在抑制剂。通过识别与WBmDapE结合的底物和产物的构象变化,揭示了参与底物结合的关键氨基酸(Arg182和Asp248)。虽然无配体和底物结合的结构呈现开放构象,但产物结合的结构显示出明显的构象变化,包括催化结构域内的移位和二聚化结构域中的辅因子,这表明是一种活性和封闭构象。从基于形状的虚拟筛选角度来看,两种卓越的化合物(ZINC42784280和ZINC84308049)已作为潜在的命中物出现。这些化合物表现出更高的结合亲和力、最佳的结合自由能、关键的氢键相互作用以及与产物结合复合物相似的属性。随后,这些化合物成为治疗丝虫病的潜在候选药物。总之,我们的研究为创新的WBmDapE抑制剂的制备提供了宝贵的见解,这些抑制剂可能用作抗丝虫药物。对这些化合物进行严格的实验验证和微调对于针对LF的前瞻性治疗干预是必要的。

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