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通过生物物理和其他方法对一种LCP蛋白-LytR-的结构见解。 (注:原文“through biophysical and methods”中第二个“and”后缺少内容,翻译可能存在一定局限性)

Structural insights of an LCP protein-LytR-from through biophysical and methods.

作者信息

Paquete-Ferreira João, Freire Filipe, Fernandes Henrique S, Muthukumaran Jayaraman, Ramos João, Bryton Joana, Panjkovich Alejandro, Svergun Dmitri, Santos Marino F A, Correia Márcia A S, Fernandes Alexandra R, Romão Maria João, Sousa Sérgio F, Santos-Silva Teresa

机构信息

Associate Laboratory i4HB-Institute for Health and Bioeconomy, NOVA School of Science and Technology, Universidade NOVA de Lisboa, Caparica, Portugal.

UCIBIO-Applied Molecular Biosciences Unit, Department of Chemistry, NOVA School of Science and Technology, Universidade NOVA de Lisboa, Caparica, Portugal.

出版信息

Front Chem. 2024 Aug 6;12:1379914. doi: 10.3389/fchem.2024.1379914. eCollection 2024.

Abstract

The rise of antibiotic-resistant bacterial strains has become a critical health concern. According to the World Health Organization, the market introduction of new antibiotics is alarmingly sparse, underscoring the need for novel therapeutic targets. The LytR-CpsA-Psr (LCP) family of proteins, which facilitate the insertion of cell wall glycopolymers (CWGPs) like teichoic acids into peptidoglycan, has emerged as a promising target for antibiotic development. LCP proteins are crucial in bacterial adhesion and biofilm formation, making them attractive for disrupting these processes. This study investigated the structural and functional characteristics of the LCP domain of LytR from subsp. dysgalactiae. The protein structure was solved by X-ray Crystallography at 2.80 Å resolution. Small-angle X-ray scattering (SAXS) data were collected to examine potential conformational differences between the free and ligand-bound forms of the LytR LCP domain. Additionally, docking and molecular dynamics (MD) simulations were used to predict the interactions and conversion of ATP to ADP and AMP. Experimental validation of these predictions was performed using malachite green activity assays. The determined structure of the LCP domain revealed a fold highly similar to those of homologous proteins while SAXS data indicated potential conformational differences between the ligand-free and ligand-bound forms, suggesting a more compact conformation during catalysis, upon ligand binding. Docking and MD simulations predicted that the LytR LCP domain could interact with ADP and ATP and catalyze their conversion to AMP. These predictions were experimentally validated by malachite green activity assays, confirming the protein's functional versatility. The study provides significant insights into the structural features and functional capabilities of the LCP domain of LytR from subsp. dysgalactiae. These findings pave the way for designing targeted therapies against antibiotic-resistant bacteria and offer strategies to disrupt bacterial biofilm formation.

摘要

抗生素耐药性细菌菌株的出现已成为一个关键的健康问题。据世界卫生组织称,新抗生素在市场上的推出极为稀少,这凸显了对新型治疗靶点的需求。LytR-CpsA-Psr(LCP)蛋白家族可促进细胞壁糖聚合物(CWGP)如磷壁酸插入肽聚糖,已成为抗生素开发的一个有前景的靶点。LCP蛋白在细菌粘附和生物膜形成中至关重要,使其成为破坏这些过程的有吸引力的靶点。本研究调查了嗜热栖热放线菌亚种LytR的LCP结构域的结构和功能特征。通过X射线晶体学以2.80 Å的分辨率解析了该蛋白结构。收集了小角X射线散射(SAXS)数据,以检查LytR LCP结构域的游离形式和配体结合形式之间的潜在构象差异。此外,对接和分子动力学(MD)模拟用于预测ATP向ADP和AMP的相互作用和转化。使用孔雀石绿活性测定法对这些预测进行了实验验证。确定的LCP结构域结构显示出与同源蛋白高度相似的折叠,而SAXS数据表明无配体形式和配体结合形式之间存在潜在的构象差异,表明在催化过程中,配体结合后构象更紧凑。对接和MD模拟预测LytR LCP结构域可以与ADP和ATP相互作用并催化它们转化为AMP。这些预测通过孔雀石绿活性测定法得到了实验验证,证实了该蛋白的功能多样性。该研究为嗜热栖热放线菌亚种LytR的LCP结构域的结构特征和功能能力提供了重要见解。这些发现为设计针对抗生素耐药细菌的靶向疗法铺平了道路,并提供了破坏细菌生物膜形成的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79f1/11337229/5dd9e0fa1cda/fchem-12-1379914-g001.jpg

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