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Between Amyloids and Aggregation Lies a Connection with Strength and Adhesion

机译:淀粉样蛋白和聚集之间的联系在于强度和附着力

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摘要

We tell of a journey that led to discovery of amyloids formed by yeast cell adhesins and their importance in biofilms and host immunity. We begin with the identification of the adhesin functional amyloid-forming sequences that mediate fiber formation in vitro. Atomic force microscopy and confocal microscopy show 2-dimensional amyloid “nanodomains” on the surface of cells that are activated for adhesion. These nanodomains are arrays of adhesin molecules that bind multivalent ligands with high avidity. Nanodomains form when adhesin molecules are stretched in the AFM or under laminar flow. Treatment with antiamyloid perturbants or mutation of the amyloid sequence prevents adhesion nanodomain formation and activation. We are now discovering biological consequences. Adhesin nanodomains promote formation and maintenance of biofilms, which are microbial communities. Also, in abscesses within candidiasis patients, we find adhesin amyloids on the surface of the fungi. In both human infection and a Caenorhabditis elegans infection model, the presence of fungal surface amyloids elicits anti-inflammatory responses. Thus, this is a story of how fungal adhesins respond to extension forces through formation of cell surface amyloid nanodomains, with key consequences for biofilm formation and host responses.
机译:我们讲述了一个旅程,该旅程导致发现了由酵母细胞粘附素形成的淀粉样蛋白及其在生物膜和宿主免疫中的重要性。我们从介导体外纤维形成的粘附素功能淀粉样蛋白形成序列的鉴定开始。原子力显微镜和共聚焦显微镜在激活的细胞粘附表面显示二维淀粉样蛋白“纳米域”。这些纳米域是粘附蛋白分子的阵列,其以高亲和力结合多价配体。当粘附素分子在AFM中或在层流下拉伸时,会形成纳米域。用抗淀粉样蛋白扰动剂处理或淀粉样蛋白序列突变可防止粘附纳米域的形成和激活。我们现在正在发现生物学后果。粘附素纳米域促进了微生物膜生物膜的形成和维持。此外,在念珠菌病患者的脓肿中,我们在真菌表面发现粘附素淀粉样蛋白。在人类感染和秀丽隐杆线虫感染模型中,真菌表面淀粉样蛋白的存在都会引起抗炎反应。因此,这是一个关于真菌粘附素如何通过细胞表面淀粉样蛋白纳米域形成对延伸力作出反应的故事,这对生物膜形成和宿主反应具有关键意义。

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