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The type II histidine triad protein HtpsC is a novel adhesion with the involvement of Streptococcus suis virulence

机译:II型组氨酸三联体蛋白HtpsC是一种新型粘附与猪链球菌毒力有关

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摘要

Streptococcal histidine triad proteins HTPs are widely distributed within the Streptococcus genus. Based on the phylogenetic relationship and domain composition, HTPs are classified into type I and type II subfamilies. Previous studies revealed that several pathogenic streptococci contain more than one htp gene. We found that the highly virulent strain of Streptococcus suis 2 (S. suis 2), 05ZYH33 encodes 3 HTPs, designated HtpsA (previously described as HtpS), HtpsB, and HtpsC. Among them, HtpsC is the only member that contains leucine-rich repeat (LRR) domains at the C-terminal. In this study, we demonstrated that the recombinant HtpsC could bind to 2 different components of human ECM complex laminin and fibronectin in vitro, suggesting that it is a novel adhesin of S. suis 2. Having constructed an htpsC mutant, we evaluated its role in the pathogenesis of the highly virulent S. suis 2 strain 05ZYH33. Our data showed that inactivation of htpsC significantly affected adherence of S. suis 2 to Hep-2 cells and shortened the survival of the bacteria in whole blood. Furthermore, deletion of htpsC significantly attenuated the virulence of S. suis 2 in mice. These results demonstrated that htpsC was involved in the pathogenesis of the highly virulent S. suis 2 strain 05ZYH33. In line with the observation, immunization with HtpsC significantly prolonged mice's survival after S. suis 05ZYH33 challenge, indicating its potential use in the vaccine development against S. suis.
机译:链球菌组氨酸三联体蛋白HTP广泛分布在链球菌属中。根据系统发育关系和域组成,HTP分为I型和II型亚家族。先前的研究表明,几种致病性链球菌含有一个以上的htp基因。我们发现猪链球菌2(S. suis 2)的高毒力株编码5个HTP,称为HtpsA(以前称为HtpS),HtpsB和HtpsC。其中,HtpsC是唯一在C末端包含富亮氨酸重复(LRR)域的成员。在这项研究中,我们证明了重组HtpsC可以在体外与人ECM复合层粘连蛋白和纤连蛋白的2种不同成分结合,表明它是猪链球菌2的新型粘附素。构建了htpsC突变体后,我们对其进行了评估。高毒力猪链球菌2株05ZYH33的发病机理。我们的数据显示,htpsC的失活会显着影响猪链球菌2对Hep-2细胞的粘附,并缩短细菌在全血中的存活时间。此外,htpsC的删除大大减弱了小鼠中猪链球菌2的毒力。这些结果表明htpsC参与了高毒力猪链球菌2株05ZYH33的发病机理。与观察结果一致,在猪链球菌05ZYH33攻击后,用HtpsC免疫显着延长了小鼠的存活期,表明其在针对猪链球菌的疫苗开发中的潜在用途。

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