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肺炎链球菌 galU 基因突变对体外生物膜生长、黏附和吞噬作用以及体内致病性有直接影响。

Streptococcus pneumoniae galU gene mutation has a direct effect on biofilm growth, adherence and phagocytosis in vitro and pathogenicity in vivo.

机构信息

University of Antwerp, Laboratory of Microbiology, Parasitology and Hygiene. Universiteitsplein 1, 2610 Wilrijk, Belgium.

Universidad de Buenos Aires, Facultad de Farmacia y Bioquímica, Departamento de Microbiología, Inmunología, Biotecnología y Genética. Cátedra de Microbiología. Junín 956. Ciudad Autónoma de Buenos Aires, Argentina.

出版信息

Pathog Dis. 2018 Oct 1;76(7):5078866. doi: 10.1093/femspd/fty069.

DOI:10.1093/femspd/fty069
PMID:30215741
Abstract

Streptococcus pneumoniae, the most common cause of bacterial pneumonia, has developed a wide range of virulence factors to evade the immune system of which the polysaccharide capsule is the most important one. Formation of this capsule is dependent on the cps gene locus, but also involves other genes-like galU. The pyrophosphorylase encoded by galU plays a role in the UDP-glucose metabolism of prokaryotes and is required for the biosynthesis of capsular polysaccharides. In this paper, the effect of a galU mutation leading to a dysfunctional UDP-glucose pyrophosphorylase (UDPG:PP) on in vitro biofilm biomass, adherence to lung epithelial cells and macrophage phagocytosis is studied. Last, in vivo virulence using a Galleria mellonella model has been studied. We show that the mutation improves streptococcal adherence to epithelial cells and macrophage phagocytosis in vitro, while there is no definitive correlation on biofilm formation between parent and mutant strains. Moreover, in vivo virulence is attenuated for all mutated strains. Together, these results demonstrate that a galU mutation in S. pneumoniae influences host cell interactions in vitro and in vivo and can strongly influence the outcome of a streptococcal infection. As such, UDPG:PP is worth investigating further as a potential drug target.

摘要

肺炎链球菌是细菌性肺炎最常见的病因,它产生了广泛的毒力因子来逃避免疫系统,其中荚膜多糖是最重要的一种。荚膜的形成依赖于 cps 基因座,但也涉及其他基因,如 galU。GalU 编码的焦磷酸化酶在原核生物的 UDP-葡萄糖代谢中发挥作用,是荚膜多糖生物合成所必需的。在本文中,研究了导致无功能 UDP-葡萄糖焦磷酸化酶(UDPG:PP)的 galU 突变对体外生物膜生物量、对肺上皮细胞的黏附和巨噬细胞吞噬作用的影响。最后,使用大蜡螟模型研究了体内毒力。我们表明,该突变可改善肺炎链球菌在体外对上皮细胞和巨噬细胞的黏附作用,而亲本和突变株之间在生物膜形成方面没有明确的相关性。此外,所有突变株的体内毒力均减弱。总之,这些结果表明,肺炎链球菌中的 galU 突变影响体外和体内的宿主细胞相互作用,并可能强烈影响链球菌感染的结果。因此,UDPG:PP 作为一种潜在的药物靶点值得进一步研究。

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