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肺炎链球菌 Spr1345 黏液结合域的晶体结构

Crystal structure of the mucin-binding domain of Spr1345 from Streptococcus pneumoniae.

机构信息

School of Life Sciences, University of Science and Technology of China, Hefei, Anhui 230026, PR China.

出版信息

J Struct Biol. 2011 Apr;174(1):252-7. doi: 10.1016/j.jsb.2010.10.016. Epub 2010 Nov 3.

DOI:10.1016/j.jsb.2010.10.016
PMID:21055474
Abstract

The surface protein Spr1345 from Streptococcus pneumoniae R6 is a 22-kDa mucin-binding protein (MucBP) involved in adherence and colonization of the human lung and respiratory tract. It is composed of a mucin-binding domain (MucBD) and a proline-rich domain (PRD) followed by an LPxTG motif, which is recognized and cleaved by sortase, resulting in a mature form of 171 residues (MF171) that is anchored to the cell wall. We found that the MucBD alone possesses comparable in vitro mucin-binding affinity to the mature form, and can be specifically enriched at the surface of human lung carcinoma A549 cells. Using single-wavelength anomalous dispersion (SAD) phasing method with the iodine signals, we solved the crystal structure of the MucBD at 2.0Å resolution, the first structure of MucBDs from pathogenic bacteria. The overall structure adopts an immunoglobulin-like fold with an elongated rod-like shape, composed of six anti-parallel β-strands and a long loop. Structural comparison suggested that the conserved C-terminal moiety may participate in the recognition of mucins. These findings provided structural insights into host-pathogen interaction mediated by mucins, which might be useful for designing novel vaccines and antibiotic drugs against human diseases caused by pneumococci.

摘要

肺炎链球菌表面蛋白 Spr1345 是一种 22kDa 的粘蛋白结合蛋白(MucBP),参与人体肺部和呼吸道的黏附和定植。它由一个粘蛋白结合结构域(MucBD)和一个富含脯氨酸的结构域(PRD)组成,后面跟着一个 LPxTG 基序,该基序被分选酶识别和切割,产生一个成熟形式的 171 个残基(MF171),锚定在细胞壁上。我们发现,单独的 MucBD 具有与成熟形式相当的体外粘蛋白结合亲和力,并且可以在人肺癌 A549 细胞表面特异性富集。我们使用单波长异常分散(SAD)相位测定法,用碘信号解析了该 MucBD 的晶体结构,分辨率为 2.0Å,这是第一个来自致病菌的 MucBD 结构。整体结构采用免疫球蛋白样折叠,呈细长棒状,由六个反平行的β-折叠和一个长环组成。结构比较表明,保守的 C 末端部分可能参与粘蛋白的识别。这些发现为粘蛋白介导的宿主-病原体相互作用提供了结构见解,这可能有助于设计针对肺炎球菌引起的人类疾病的新型疫苗和抗生素药物。

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