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首页> 外文期刊>Eukaryotic cell >Heterologous Expression of Candida albicans Cell Wall-Associated Adhesins in Saccharomyces cerevisiae Reveals Differential Specificities in Adherence and Biofilm Formation and in Binding Oral Streptococcus gordonii
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Heterologous Expression of Candida albicans Cell Wall-Associated Adhesins in Saccharomyces cerevisiae Reveals Differential Specificities in Adherence and Biofilm Formation and in Binding Oral Streptococcus gordonii

机译:酿酒酵母细胞壁相关黏附素在啤酒酵母中的异源表达揭示了在粘附和生物膜形成以及结合口服链球菌戈登氏中的差异特异性。

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Colonization and infection of the human host by opportunistic pathogen Candida albicans derive from an ability of this fungus to colonize mucosal tissues and prosthetic devices within the polymicrobial communities present. To determine the functions of C. albicans cell wall proteins in interactions with host or bacterial molecules, Saccharomyces cerevisiae was utilized as a surrogate host to express C. albicans cell wall proteins Als3p, Eap1p, Hwp1p, and Rbt1p. Salivary pellicle and fibrinogen were identified as novel substrata for Als3p and Hwp1p, while only Als3p mediated adherence of S. cerevisiae to basement membrane collagen type IV. Parental S. cerevisiae cells failed to form biofilms on salivary pellicle, polystyrene, or silicone, but cells expressing Als3p or Hwp1p exhibited significant attachment to each surface. Virulence factor Rbt1p also conferred lower-level binding to salivary pellicle and polystyrene. S. cerevisiae cells expressing Eap1p formed robust biofilms upon polystyrene surfaces but not salivary pellicle. Proteins Als3p and Eap1p, and to a lesser degree Hwp1p, conferred upon S. cerevisiae the ability to bind cells of the oral primary colonizing bacterium Streptococcus gordonii. These interactions, which occurred independently of amyloid aggregate formation, provide the first examples of specific C. albicans surface proteins serving as receptors for bacterial adhesins. Streptococcus gordonii did not bind parental S. cerevisiae or cells expressing Rbt1p. Taken collectively, these data suggest that a network of cell wall proteins comprising Als3p, Hwp1p, and Eap1p, with complementary adhesive functions, promotes interactions of C. albicans with host and bacterial molecules, thus leading to effective colonization within polymicrobial communities.
机译:机会病原体白色念珠菌对人宿主的定殖和感染源于这种真菌在存在的微生物群落中定殖粘膜组织和修复装置的能力。为了确定白色念珠菌细胞壁蛋白在与宿主或细菌分子相互作用中的功能,酿酒酵母被用作替代宿主来表达白色念珠菌细胞壁蛋白Als3p,Eap1p,Hwp1p和Rbt1p。唾液薄膜和纤维蛋白原被确定为Als3p和Hwp1p的新基质,而只有Als3p介导酿酒酵母对IV型基底膜胶原的粘附。亲本酿酒酵母细胞未能在唾液薄膜,聚苯乙烯或硅树脂上形成生物膜,但表达Als3p或Hwp1p的细胞在每个表面上均表现出显着附着。毒力因子Rbt1p还赋予唾液薄膜和聚苯乙烯较低水平的结合力。表达Eap1p的酿酒酵母细胞在聚苯乙烯表面形成了坚固的生物膜,但在唾液薄膜上却没有。蛋白质Als3p和Eap1p,以及较小程度的Hwp1p,赋予了酿酒酵母结合口服原代定殖细菌戈登链球菌细胞的能力。这些与淀粉样蛋白聚集体形成无关的相互作用提供了特定的白色念珠菌表面蛋白作为细菌粘附素受体的第一个例子。戈登链球菌不结合亲本酿酒酵母或表达Rbt1p的细胞。总体而言,这些数据表明,包含Als3p,Hwp1p和Eap1p的细胞壁蛋白网络具有互补的粘附功能,可促进白色念珠菌与宿主和细菌分子的相互作用,从而导致在多菌种群落内有效定居。

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