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本文引用的文献

1
THE ROLE OF THE MUCOID POLYSACCHARIDE (HYALURONIC ACID) IN THE VIRULENCE OF GROUP A HEMOLYTIC STREPTOCOCCI.A 组溶血性链球菌毒力中的黏多糖(透明质酸)的作用。
J Exp Med. 1944 Mar 1;79(3):319-30. doi: 10.1084/jem.79.3.319.
2
A response regulator that represses transcription of several virulence operons in the group A streptococcus.一种抑制A群链球菌中多个毒力操纵子转录的应答调节因子。
J Bacteriol. 1999 Jun;181(12):3649-57. doi: 10.1128/JB.181.12.3649-3657.1999.
3
Characterization of nra, a global negative regulator gene in group A streptococci.A群链球菌中全局负调控基因nra的特性分析
Mol Microbiol. 1999 Feb;31(4):1051-64. doi: 10.1046/j.1365-2958.1999.01241.x.
4
Identification of csrR/csrS, a genetic locus that regulates hyaluronic acid capsule synthesis in group A Streptococcus.鉴定csrR/csrS,一个调节A群链球菌中透明质酸荚膜合成的基因座。
Mol Microbiol. 1998 Oct;30(1):209-19. doi: 10.1046/j.1365-2958.1998.01057.x.
5
Molecular analysis of the role of the group A streptococcal cysteine protease, hyaluronic acid capsule, and M protein in a murine model of human invasive soft-tissue infection.A群链球菌半胱氨酸蛋白酶、透明质酸荚膜和M蛋白在人类侵袭性软组织感染小鼠模型中的作用的分子分析
J Clin Invest. 1998 Aug 1;102(3):550-60. doi: 10.1172/JCI3065.
6
Role of streptococcal pyrogenic exotoxin B in the mouse model of group A streptococcal infection.A群链球菌感染小鼠模型中链球菌致热外毒素B的作用。
Infect Immun. 1998 Aug;66(8):3931-5. doi: 10.1128/IAI.66.8.3931-3935.1998.
7
Structure of the has operon promoter and regulation of hyaluronic acid capsule expression in group A Streptococcus.A组链球菌中透明质酸荚膜表达相关has操纵子启动子的结构及调控
Mol Microbiol. 1998 Apr;28(2):343-53. doi: 10.1046/j.1365-2958.1998.00800.x.
8
Hyaluronic acid capsule modulates M protein-mediated adherence and acts as a ligand for attachment of group A Streptococcus to CD44 on human keratinocytes.透明质酸荚膜调节M蛋白介导的黏附,并作为A组链球菌与人角质形成细胞上CD44结合的配体。
J Clin Invest. 1998 Apr 15;101(8):1708-16. doi: 10.1172/JCI2121.
9
Reduced virulence of group A streptococcal Tn916 mutants that do not produce streptolysin S.不产生链球菌溶血素S的A组链球菌Tn916突变体的毒力降低
Infect Immun. 1998 Apr;66(4):1671-9. doi: 10.1128/IAI.66.4.1671-1679.1998.
10
Role of mga in growth phase regulation of virulence genes of the group A streptococcus.Mga在A群链球菌毒力基因生长阶段调控中的作用。
J Bacteriol. 1997 Aug;179(16):5178-87. doi: 10.1128/jb.179.16.5178-5187.1997.

一种双组分调控系统CsrR-CsrS可抑制化脓性链球菌的三种毒力因子的表达,这三种毒力因子分别是透明质酸荚膜、链球菌溶血素S和致热外毒素B。

A two-component regulatory system, CsrR-CsrS, represses expression of three Streptococcus pyogenes virulence factors, hyaluronic acid capsule, streptolysin S, and pyrogenic exotoxin B.

作者信息

Heath A, DiRita V J, Barg N L, Engleberg N C

机构信息

Departments of Internal Medicine, University of Michigan Medical School, Ann Arbor, Michigan 48109, USA.

出版信息

Infect Immun. 1999 Oct;67(10):5298-305. doi: 10.1128/IAI.67.10.5298-5305.1999.

DOI:10.1128/IAI.67.10.5298-5305.1999
PMID:10496909
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC96884/
Abstract

Certain Tn916 insertions in the chromosome of an M1-type, nonmucoid Streptococcus pyogenes isolate (MGAS166) were previously shown to result in stable mucoidy with increased expression of the capsular synthetic genes. The transposon insertions in these strains are directly upstream of an apparent operon encoding a two-component regulatory system, designated csrR-csrS. Compared with MGAS166, these mucoid mutants are more hemolytic and cause significantly more tissue damage in a murine model of skin infection. To extend these observations, we constructed an in-frame deletion in the gene encoding the response regulator, csrR, and we evaluated the expression of other known S. pyogenes virulence factors. We discovered that csrR mutants have enhanced transcription of sagA, a gene associated with streptolysin S (SLS) and speB, the gene encoding pyrogenic exotoxin B (SpeB). The mutants also express substantially higher SLS activity and SpeB antigen in late-exponential-phase cultures. There is no change in expression of emm, scpA, sic, or cpa (genes encoding other S. pyogenes virulence factors). CsrR- strains but not the wild-type parental strain produce necrotizing lesions in a mouse model of subcutaneous infection. A double mutant with deletions in both csrR and the capsular synthesis genes caused fewer and smaller necrotic skin lesions than the csrR mutants. However, this nonmucoid csrR strain was more likely than the wild type to yield necrotic lesions, suggesting that mucoidy contributes to virulence in this model of infection but that there are other csrR-regulated factors involved in the production of necrotic lesions.

摘要

先前研究表明,在M1型非黏液性化脓性链球菌分离株(MGAS166)染色体中的某些Tn916插入会导致稳定的黏液化,并使荚膜合成基因的表达增加。这些菌株中的转座子插入位于一个明显的操纵子的直接上游,该操纵子编码一个双组分调节系统,命名为csrR - csrS。与MGAS166相比,这些黏液性突变体溶血能力更强,并且在皮肤感染的小鼠模型中造成的组织损伤明显更多。为了扩展这些观察结果,我们构建了编码应答调节因子csrR的基因的框内缺失突变体,并评估了其他已知的化脓性链球菌毒力因子的表达。我们发现,csrR突变体中与链球菌溶血素S(SLS)相关的基因sagA以及编码热原性外毒素B(SpeB)的基因speB的转录增强。这些突变体在指数生长后期培养物中还表达了显著更高的SLS活性和SpeB抗原。emm、scpA、sic或cpa(编码其他化脓性链球菌毒力因子的基因)的表达没有变化。在皮下感染的小鼠模型中,CsrR - 菌株而非野生型亲本菌株会产生坏死性病变。一个在csrR和荚膜合成基因中均有缺失的双突变体比csrR突变体产生的坏死性皮肤病变更少且更小。然而,这种非黏液性的csrR菌株比野生型更易产生坏死性病变,这表明黏液化在该感染模型中有助于毒力,但在坏死性病变的产生中还有其他受csrR调节的因子参与。