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分选酶A利用一种辅助性蛋白质锚定物,以实现无乳链球菌菌毛在细胞壁上的高效锚定。

Sortase A utilizes an ancillary protein anchor for efficient cell wall anchoring of pili in Streptococcus agalactiae.

作者信息

Nobbs Angela H, Rosini Roberto, Rinaudo C Daniela, Maione Domenico, Grandi Guido, Telford John L

机构信息

Novartis Vaccines, Via Fiorentina 1, 53100 Siena, Italy.

出版信息

Infect Immun. 2008 Aug;76(8):3550-60. doi: 10.1128/IAI.01613-07. Epub 2008 Jun 9.

Abstract

Pili are putative virulence factors and promising vaccine candidates in Streptococcus agalactiae (group B Streptococcus [GBS]) infection, a leading cause of neonatal sepsis and meningitis. The genes necessary for pilus synthesis and assembly are clustered in pilus islands (PI). Each gene encodes three structural subunits (a backbone and two ancillary proteins) bearing a C-terminal LPXTG motif and two subfamily C sortases (SrtC) involved in covalent polymerization of the subunits. GBS strains also possess the conserved "housekeeping" sortase A (SrtA), but its role in pilus assembly is unclear. To address this issue, pilus expression and cell wall anchoring were analyzed in srtA deletion mutants. Loss of SrtA did not affect pilus polymerization. However, pilus expression on the cell surface was reduced, and pili accumulated in the culture supernatant. Furthermore, cell-associated pili could be readily released by detergent treatment, indicating that SrtA is involved in covalent anchoring of pili to the cell wall. When each of the genes comprising PI-2a was systematically deleted, only the absence of ancillary subunit GBS150 or the SrtC required for incorporation of GBS150 into pili mimicked the srtA mutant phenotype. Thus, from these data a model for GBS pilus assembly can be proposed in which PI sortases are responsible for polymerization of the pilus structure, while SrtA is required to covalently attach it to the cell wall, utilizing ancillary pilus subunit GBS150 as the anchor protein.

摘要

菌毛是无乳链球菌(B族链球菌[GBS])感染中假定的毒力因子和有前景的疫苗候选物,GBS感染是新生儿败血症和脑膜炎的主要原因。菌毛合成和组装所需的基因聚集在菌毛岛(PI)中。每个基因编码三个带有C末端LPXTG基序的结构亚基(一个主链和两个辅助蛋白)以及两个参与亚基共价聚合的C亚家族分选酶(SrtC)。GBS菌株还拥有保守的“管家”分选酶A(SrtA),但其在菌毛组装中的作用尚不清楚。为了解决这个问题,对srtA缺失突变体中的菌毛表达和细胞壁锚定进行了分析。SrtA的缺失不影响菌毛聚合。然而,细胞表面的菌毛表达减少,菌毛积聚在培养上清液中。此外,细胞相关菌毛可以通过去污剂处理轻易释放,表明SrtA参与菌毛与细胞壁的共价锚定。当系统地删除组成PI-2a的每个基因时,只有缺少辅助亚基GBS150或将GBS150掺入菌毛所需的SrtC会模拟srtA突变体表型。因此,根据这些数据可以提出一个GBS菌毛组装模型,其中PI分选酶负责菌毛结构的聚合,而SrtA需要利用辅助菌毛亚基GBS150作为锚定蛋白将其共价连接到细胞壁上。

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