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马链球菌兽亚种血红素摄取系统的特性。

Characterization of the haem-uptake system of the equine pathogen Streptococcus equi subsp. equi.

机构信息

Department of Microbiology, Moyne Institute of Preventive Medicine, Trinity College Dublin, Dublin 2, Ireland.

出版信息

Microbiology (Reading). 2010 Jun;156(Pt 6):1824-1835. doi: 10.1099/mic.0.036087-0. Epub 2010 Mar 11.

Abstract

Streptococcus equi possesses a haem-uptake system homologous to that of Streptococcus pyogenes and Streptococcus zooepidemicus. The system consists of two ligand-binding proteins (Shr and Shp) and proteins (HtsA-C) with homology to an ABC transporter. The haem-uptake system of S. equi differs from that of S. pyogenes and S. zooepidemicus in that Shr is truncated by two-thirds. This study focused on the SeShr, SeShp and SeHtsA proteins of S. equi. Analysis of shr, shp and shphtsA knockout mutants showed that all three proteins were expressed in vitro and that expression was upregulated under conditions of iron limitation. SeShr possesses no membrane-/cell wall-spanning sequences and was shown to be secreted. Both SeShp and SeHtsA were confirmed to be envelope-associated. Recombinant SeShp and SeHtsA proteins have been previously shown to bind haem and SeHtsA could capture haem from SeShp. This report extends these studies and shows that both SeShp and SeHtsA can sequester haem from haemoglobin but not from haemoglobin-haptoglobin complexes. Like full-length Shr, SeShr possesses haemoglobin and haemoglobin-haptoglobin binding ability but unlike full-length Shr, it lacks haem- or fibronectin-binding capabilities. Analysis of SeShr truncates showed that residues within and upstream of the near transporter (NEAT) domain are required for this ligand binding. Structural predictions suggest that truncation of NEAT1 in SeShr accounts for its impaired ability to bind haem. Haem and haemoglobin restored to almost normal the impaired growth rates of wild-type S. equi cultured under iron-limiting conditions. However, no difference in the growth rates of wild-type and mutants could be detected under the in vitro growth conditions tested.

摘要

马链球菌具有与酿脓链球菌和兽疫链球菌同源的血红素摄取系统。该系统由两个配体结合蛋白(Shr 和 Shp)和具有 ABC 转运蛋白同源性的蛋白(HtsA-C)组成。马链球菌的血红素摄取系统与酿脓链球菌和兽疫链球菌的系统不同之处在于 Shr 被截断了三分之二。本研究集中于马链球菌的 SeShr、SeShp 和 SeHtsA 蛋白。对 shr、shp 和 shphtsA 敲除突变体的分析表明,这三种蛋白均在体外表达,并且在铁限制条件下表达上调。SeShr 没有跨膜/细胞壁的序列,被证明是分泌的。SeShp 和 SeHtsA 均被证实与包膜相关。先前已经证实重组 SeShp 和 SeHtsA 蛋白结合血红素,并且 SeHtsA 可以从 SeShp 中捕获血红素。本报告扩展了这些研究,并表明 SeShp 和 SeHtsA 均可从血红蛋白中但不能从血红蛋白-触珠蛋白复合物中螯合血红素。与全长 Shr 一样,SeShr 具有结合血红蛋白和血红蛋白-触珠蛋白的能力,但与全长 Shr 不同,它缺乏结合血红素或纤维连接蛋白的能力。对 SeShr 截断物的分析表明,靠近转运蛋白(NEAT)结构域内和上游的残基是这种配体结合所必需的。结构预测表明,SeShr 中 NEAT1 的截断导致其结合血红素的能力受损。血红素和血红蛋白使在铁限制条件下培养的野生型马链球菌的生长速度几乎恢复正常。然而,在测试的体外生长条件下,无法检测到野生型和突变体的生长速度之间的差异。

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