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识别巨大芬戈尔德菌用于穿透和定殖人皮肤的分子机制。

Identification of molecular mechanisms used by Finegoldia magna to penetrate and colonize human skin.

作者信息

Murphy Elizabeth C, Mörgelin Matthias, Reinhardt Dieter P, Olin Anders I, Björck Lars, Frick Inga-Maria

机构信息

Department of Clinical Sciences, Division of Infection Medicine, Lund University, SE-22184, Lund, Sweden.

出版信息

Mol Microbiol. 2014 Oct;94(2):403-17. doi: 10.1111/mmi.12773. Epub 2014 Sep 11.

Abstract

Finegoldia magna is a Gram-positive anaerobic commensal of the human skin microbiota, but also known to act as an opportunistic pathogen. Two primary virulence factors of F. magna are the subtilisin-like extracellular serine protease SufA and the adhesive protein FAF. This study examines the molecular mechanisms F. magna uses when colonizing or establishing an infection in the skin. FAF was found to be essential in the initial adherence of F. magna to human skin biopsies. In the upper layers of the epidermis FAF mediates adhesion through binding to galectin-7 - a keratinocyte cell marker. Once the bacteria moved deeper into the skin to the basement membrane layer, SufA was found to degrade collagen IV which forms the backbone structure of the basement membrane. It also degraded collagen V, whereby F. magna could reach deeper dermal tissue sites. In the dermis, FAF interacts with collagen V and fibrillin, which presumably helps the bacteria to establish infection in this area. The findings of this study paint a clear picture of how F. magna interacts with human skin and explain how it is such a successful opportunistic pathogen in chronic wounds and ulcers.

摘要

巨大芬戈尔德菌是人类皮肤微生物群中的一种革兰氏阳性厌氧菌,但也被认为是一种机会致病菌。巨大芬戈尔德菌的两个主要毒力因子是枯草杆菌蛋白酶样细胞外丝氨酸蛋白酶SufA和粘附蛋白FAF。本研究探讨了巨大芬戈尔德菌在皮肤定植或感染时所采用的分子机制。研究发现,FAF在巨大芬戈尔德菌对人皮肤活检组织的初始黏附中至关重要。在表皮上层,FAF通过与半乳糖凝集素-7(一种角质形成细胞标志物)结合来介导黏附。一旦细菌深入皮肤至基底膜层,就会发现SufA会降解构成基底膜主干结构的IV型胶原蛋白。它还会降解V型胶原蛋白,从而使巨大芬戈尔德菌能够到达更深层的真皮组织部位。在真皮中,FAF与V型胶原蛋白和原纤蛋白相互作用,这可能有助于细菌在该区域建立感染。这项研究的结果清晰地描绘了巨大芬戈尔德菌与人类皮肤的相互作用方式,并解释了它在慢性伤口和溃疡中为何是如此成功的机会致病菌。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9ec/4241043/150fe12137ec/mmi0094-0403-f1.jpg

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