首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Elucidating the molecular interaction of Zebrafish (Danio rerio) peptidoglycan recognition protein 2 with diaminopimelic acid and lysine type peptidoglycans using in silico approaches
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Elucidating the molecular interaction of Zebrafish (Danio rerio) peptidoglycan recognition protein 2 with diaminopimelic acid and lysine type peptidoglycans using in silico approaches

机译:用二氨基丙烯酸和赖氨酸型肽聚糖使用硅藻土(Danio Rerio)肽蛋白识别蛋白2的分子相互作用在Silico方法中使用二氨基甲酸和赖氨酸型肽聚糖

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摘要

Peptidoglycan recognition proteins (PGRPs) belong to the family of pattern recognition receptor, represent the major constituent of innate immunity. Although PGRPs are structurally conserved through evolution, their involvement in innate immunity is different in vertebrates and invertebrates. They are highly specific towards recognition of ligands and can hydrolyze bacterial peptidoglycans (PGNs). Zebrafish PGRPs (zPGRPs) have both peptidoglycans lytic amidase activity and broad-spectrum bactericidal activity, but far less is known about how these receptors recognize these microbial ligands. Such studies are hindered due to lack of structural and functional configuration of zPGRPs. Therefore, in this study, we predicted the three-dimensional structure of zPGRP2 through theoretical modeling, investigated the conformational and dynamic properties through molecular dynamics simulations. Molecular docking study revealed the microbial ligands, that is, muramyl pentapeptide-DAP , muramyl pentapeptide-LYS, muramyl tripeptide-DAP, muramyl tripeptide-Lys, muramyl tetrapeptide-DAP, muramyl tetrapeptide-LYS and tracheal cytotoxin interacts with the conserved amino acids of the ligand recognition site comprised of beta 1, alpha 2, alpha 4, beta 4 and loops connecting beta 1 - alpha 2, alpha 2 - beta 2, beta 3 - beta 4 and alpha 4 - alpha 5. Conserved His31, His32, Ala34, Ile35, Pro36, Lys38, Asp60, Trp61, Trp63, Ala89, His90, Asp106, His143 and Arg144 are predicted to essential for binding and provides stability to these zPGRP-PGN complexes. Our study provides basic molecular information for further research on the immune mechanisms of PGRP's in Zebrafish. The plasticity of the zPGRP's binding site revealed by these microbial ligands suggests an intrinsic capacity of the innate immune system to rapidly evolve specificities to meet new microbial challenges in the future. Communicated by Ramaswamy H. Sarma
机译:肽聚糖识别蛋白(PGRPs)属于图案识别受体的家族,代表了先天免疫的主要组成部分。虽然PGRP通过演变进行了结构性地保守,但它们在先天免疫中的参与在脊椎动物和无脊椎动物中是不同的。它们对识别配体具有高度特异性,可以水解细菌肽聚糖(PGN)。斑马鱼PGRPS(ZPGRPS)具有肽聚糖碱性酰胺酶活性和广谱杀菌活性,但是关于这些受体如何识别这些微生物配体的众所周知。由于ZPGRP的结构和功能配置缺乏这种研究,因此受阻。因此,在本研究中,我们通过理论建模预测ZPGRP2的三维结构,通过分子动力学模拟研究了构象和动态特性。分子对接研究揭示了微生物配体,即甲氨基肽-DAP,甲戊肽 - 百合虱,三肽-DAP,三肽 - 百合,蛋白四肽-DAP,甲蛋白四肽 - Lys和气管细胞毒素与保守的氨基酸相互作用包含β1,α2,α4,β4和环路的配体识别位点,连接β1-α2,α2 - β2,β3 - β4和α4 - α5.保守His31,His32,Ala34预计IL35,PRO36,Lys38,ASP60,TRP61,TRP63,ALA89,HIS90,ASP106,HIS143和ARG144对于结合并提供对这些ZPGRP-PGN复合物的稳定性。我们的研究提供了进一步研究PGRP在斑马鱼的免疫机制的基本分子信息。这些微生物配体揭示的ZPGRP结合位点的可塑性表明先天免疫系统的内在能力,以迅速发展的特异性,以便将来满足新的微生物挑战。由Ramaswamy H. Sarma沟通

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