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CodY调节因子对于猪链球菌2型的毒力至关重要。

The CodY regulator is essential for virulence in Streptococcus suis serotype 2.

作者信息

Feng Liping, Zhu Jiawen, Chang Haitao, Gao Xiaoping, Gao Cheng, Wei Xiaofeng, Yuan Fangyan, Bei Weicheng

机构信息

State Key Laboratory of Agricultural Microbiology, College of Veterinary Medicine, Huazhong Agricultural University, Wuhan 430070, China.

Shanghai Laboratory Animal Research Center, Shanghai 201203, China.

出版信息

Sci Rep. 2016 Feb 17;6:21241. doi: 10.1038/srep21241.

Abstract

The main role of CodY, a global regulatory protein in most low G + C gram-positive bacteria, is in transcriptional repression. To study the functions of CodY in Streptococcus suis serotype 2 (S. suis 2), a mutant codY clone named ∆codY was constructed to explore the phenotypic variation between ∆codY and the wild-type strain. The result showed that the codY mutation significantly inhibited cell growth, adherence and invasion ability of S. suis 2 to HEp-2 cells. The codY mutation led to decreased binding of the pathogen to the host cells, easier clearance by RAW264.7 macrophages and decreased growth ability in fresh blood of Cavia porcellus. The codY mutation also attenuated the virulence of S. suis 2 in BALB/c mice. Morphological analysis revealed that the codY mutation decreased the thickness of the capsule of S. suis 2 and changed the surface structures analylized by SDS-PAGE. Finally, the codY mutation altered the expressions of many virulence related genes, including sialic acid synthesis genes, leading to a decreased sialic acid content in capsule. Overall, mutation of codY modulated bacterial virulence by affecting the growth and colonization of S. suis 2, and at least via regulating sialic acid synthesis and capsule thickness.

摘要

CodY是大多数低G+C含量革兰氏阳性菌中的一种全局调控蛋白,其主要作用是转录抑制。为了研究CodY在猪链球菌2型(S. suis 2)中的功能,构建了一个名为∆codY的突变型codY克隆,以探究∆codY与野生型菌株之间的表型差异。结果表明,codY突变显著抑制了S. suis 2的细胞生长、黏附及对HEp-2细胞的侵袭能力。codY突变导致病原体与宿主细胞的结合减少,更容易被RAW264.7巨噬细胞清除,并且在豚鼠新鲜血液中的生长能力下降。codY突变还减弱了S. suis 2在BALB/c小鼠中的毒力。形态学分析显示,codY突变降低了S. suis 2的荚膜厚度,并改变了通过SDS-PAGE分析的表面结构。最后,codY突变改变了许多毒力相关基因的表达,包括唾液酸合成基因,导致荚膜中唾液酸含量降低。总体而言,codY突变通过影响S. suis 2的生长和定植,至少通过调节唾液酸合成和荚膜厚度来调节细菌毒力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd4d/4756307/f6fc5e68eb7f/srep21241-f1.jpg

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