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布鲁氏菌中参与黏附宿主细胞的基因组岛:一种新黏附素和转运因子的鉴定。

A genomic island in Brucella involved in the adhesion to host cells: Identification of a new adhesin and a translocation factor.

机构信息

Instituto de Investigaciones Biotecnológicas 'Dr. Rodolfo A. Ugalde', IIB-UNSAM, IIBIO-CONICET, Universidad Nacional de San Martín, Buenos Aires, Argentina.

出版信息

Cell Microbiol. 2020 Nov;22(11):e13245. doi: 10.1111/cmi.13245. Epub 2020 Aug 24.

DOI:10.1111/cmi.13245
PMID:32657513
Abstract

Adhesion to host cells is the first step in the virulence cycle of any pathogen. In Gram-negative bacteria, adhesion is mediated, among other virulence factors such as the lipopolysaccharides, by specific outer-membrane proteins generally termed adhesins that belong to a wide variety of families and have different evolutionary origins. In Brucella, a widespread zoonotic pathogen of animal and human health concern, adhesion is central as it may determine the intracellular fate of the bacterium, an essential stage in its pathogenesis. In the present paper, we further characterised a genomic locus that we have previously reported encodes an adhesin (BigA) with a bacterial immunoglobulin-like domain (BIg-like). We found that this region encodes a second adhesin, which we have named BigB; and PalA, a periplasmic protein necessary for the proper display in the outer membrane of BigA and BigB. Deletion of bigB or palA diminishes the adhesion of the bacterium and overexpression of BigB dramatically increases it. Incubation of cells with the recombinant BIg-like domain of BigB induced important cytoskeletal rearrangements and affected the focal adhesion sites indicating that the adhesin targets cell-cell or cell-matrix proteins. We additionally show that PalA has a periplasmic localisation and is completely necessary for the proper display of BigA and BigB, probably avoiding their aggregation and facilitating their transport to the outer membrane. Our results indicate that this genomic island is entirely devoted to the adhesion of Brucella to host cells.

摘要

黏附宿主细胞是任何病原体毒力周期的第一步。在革兰氏阴性菌中,黏附作用由其他毒力因子介导,如脂多糖,由特定的外膜蛋白介导,这些蛋白通常被称为黏附素,属于多种家族,具有不同的进化起源。在布氏菌属中,一种广泛存在的动物和人类健康关注的动物病原体,黏附作用是至关重要的,因为它可能决定细菌的细胞内命运,这是其发病机制的一个重要阶段。在本文中,我们进一步研究了一个基因组座,我们之前报道该座编码一个具有细菌免疫球蛋白样结构域(BIg-like)的黏附素(BigA)。我们发现该区域编码第二个黏附素,我们将其命名为 BigB;以及 PalA,一种周质蛋白,对于 BigA 和 BigB 在外膜中的正确展示是必要的。bigB 或 palA 的缺失会降低细菌的黏附能力,而过表达 BigB 则会显著增加其黏附能力。用重组 BigB 的 BIg-like 结构域孵育细胞会引起重要的细胞骨架重排,并影响焦点黏附位点,表明黏附素靶向细胞-细胞或细胞-基质蛋白。我们还表明,PalA 具有周质定位,对于 BigA 和 BigB 的正确展示是完全必要的,可能避免了它们的聚集,并促进了它们向外膜的运输。我们的结果表明,这个基因组岛完全致力于布氏菌属黏附宿主细胞。

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