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肽聚糖识别蛋白中病原体相关分子模式结合位点的多配体特异性。

Multiligand specificity of pathogen-associated molecular pattern-binding site in peptidoglycan recognition protein.

机构信息

Department of Biophysics, All India Institute of Medical Sciences, New Delhi, India 110029.

出版信息

J Biol Chem. 2011 Sep 9;286(36):31723-30. doi: 10.1074/jbc.M111.264374. Epub 2011 Jul 22.

Abstract

The peptidoglycan recognition protein PGRP-S is an innate immunity molecule that specifically interacts with microbial peptidoglycans and other pathogen-associated molecular patterns. We report here two structures of the unique tetrameric camel PGRP-S (CPGRP-S) complexed with (i) muramyl dipeptide (MDP) at 2.5 Å resolution and (ii) GlcNAc and β-maltose at 1.7Å resolution. The binding studies carried out using surface plasmon resonance indicated that CPGRP-S binds to MDP with a dissociation constant of 10(-7) M, whereas the binding affinities for GlcNAc and β-maltose separately are in the range of 10(-4) M to 10(-5) M, whereas the dissociation constant for the mixture of GlcNAc and maltose was estimated to be 10(-6) M. The data from bacterial suspension culture experiments showed a significant inhibition of the growth of Staphylococcus aureus cells when CPGRP-S was added to culture medium. The ELISA experiment showed that the amount of MDP-induced production of TNF-α and IL-6 decreased considerably after the introduction of CPGRP-S. The crystal structure determinations of (i) a binary complex with MDP and (ii) a ternary complex with GlcNAc and β-maltose revealed that MDP, GlcNAc, and β-maltose bound to CPGRP-S in the ligand binding cleft, which is situated at the interface of molecules C and D of the homotetramer formed by four protein molecules A, B, C, and D. In the binary complex, the muramyl moiety of MDP is observed at the C-D interface, whereas the peptide chain protrudes into the center of tetramer. In the ternary complex, GlcNAc and β-maltose occupy distinct non-overlapping positions belonging to different subsites.

摘要

肽聚糖识别蛋白 PGRP-S 是一种先天免疫分子,它特异性地与微生物肽聚糖和其他病原体相关的分子模式相互作用。我们在这里报告了两个独特的骆驼 PGRP-S(CPGRP-S)四聚体复合物的结构:(i)与 Muramyl dipeptide(MDP)在 2.5 Å 分辨率下结合,(ii)与 GlcNAc 和β-麦芽糖在 1.7 Å 分辨率下结合。使用表面等离子体共振进行的结合研究表明,CPGRP-S 与 MDP 的解离常数为 10(-7) M,而分别与 GlcNAc 和β-麦芽糖的结合亲和力在 10(-4) M 到 10(-5) M 范围内,而 GlcNAc 和麦芽糖混合物的解离常数估计为 10(-6) M。细菌悬浮培养实验的数据表明,当 CPGRP-S 添加到培养基中时,金黄色葡萄球菌细胞的生长受到显著抑制。ELISA 实验表明,引入 CPGRP-S 后,MDP 诱导的 TNF-α和 IL-6 的产生量大大减少。与 MDP 的二元复合物和与 GlcNAc 和β-麦芽糖的三元复合物的晶体结构测定表明,MDP、GlcNAc 和β-麦芽糖结合在由四个 A、B、C 和 D 分子组成的同源四聚体的分子 C 和 D 的结合口袋中。在二元复合物中,MDP 的 Muramyl 部分位于 C-D 界面,而肽链则突入四聚体的中心。在三元复合物中,GlcNAc 和β-麦芽糖占据属于不同亚基的不同且不重叠的位置。

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