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白色念珠菌表现出两类细胞表面结合位点,用于血清白蛋白,通过其亲和力、丰度和在种间信号传递中的预期作用来定义。

Candida albicans exhibit two classes of cell surface binding sites for serum albumin defined by their affinity, abundance and prospective role in interkingdom signalling.

机构信息

Faculty of Health & Medicine, Lancaster University, Lancaster, England, United Kingdom.

出版信息

PLoS One. 2021 Jul 19;16(7):e0254593. doi: 10.1371/journal.pone.0254593. eCollection 2021.

Abstract

Serum albumin binding to the yeast form of Candida albicans is described. Two populations of binding site are identified using two complementary spectroscopic techniques: an extrinsic fluorescent probe, 3-hexa-decanoyl-7-hydrocoumarin ([HEXCO) added to the C. albicans yeast cell surface that records the electrostatic surface potential and so responds to the surface binding of serum albumin and secondly a light scattering technique that reveals how albumin modulates aggregation of the yeast population. The albumin binding sites are found to possess different binding affinities and relative abundance leading to different total binding capacities. These are characterized as a receptor population with high affinity binding (Kd ~ 17 μM) but relatively low abundance and a separate population with high abundance but much lower affinity (Kd ~ 364 μM). The low-affinity binding sites are shown to be associated with the yeast cell aggregation. These values are found be dependent on the C. albicans strain and the nature of the culture media; some examples of these effects are explored. The possible physiological consequences of the presence of these sites are speculated in terms of evading the host's immune response, biofilm formation and possible interkingdom signaling processes.

摘要

描述了血清白蛋白与白色念珠菌酵母形式的结合。使用两种互补的光谱技术鉴定了两种结合位点:一种是添加到白色念珠菌酵母细胞表面的外源性荧光探针 3-己酰基-7-羟基香豆素([HEXCO],记录静电表面电势,因此响应血清白蛋白的表面结合,其次是光散射技术,该技术揭示了白蛋白如何调节酵母群体的聚集。白蛋白结合位点具有不同的结合亲和力和相对丰度,从而导致不同的总结合容量。这些被表征为具有高亲和力结合(Kd17μM)但相对丰度较低的受体群体,以及具有高丰度但亲和力低得多的单独群体(Kd364μM)。低亲和力结合位点与酵母细胞聚集有关。这些值被发现取决于白色念珠菌菌株和培养介质的性质;探讨了这些影响的一些例子。根据这些位点的存在,推测了逃避宿主免疫反应、生物膜形成和可能的跨物种信号传递过程等可能的生理后果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/569e/8289007/9497e3c08579/pone.0254593.g001.jpg

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