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Identification and Characterization of Rvs162/Rvs167-3, a Novel N-BAR Heterodimer in the Human Fungal Pathogen Candida albicans

机译:Rvs162 / Rvs167-3,在人类真菌病原体白色念珠菌中的一种新型N-BAR异二聚体的鉴定与表征

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Membrane reshaping resides at the core of many important cellular processes, and among its mediators are the BAR (Bin, Amphiphysin, Rvs) domain-containing proteins. We have explored the diversity and function of the Rvs BAR proteins in Candida albicans and identified a novel family member, Rvs167-3 (orf19.1861). We show that Rvs167-3 specifically interacts with Rvs162 to form a stable BAR heterodimer able to bind liposomes in vitro. A second, distinct heterodimer is formed by the canonical BAR proteins Rvs161 and Rvs167. Purified Rvs161/Rvs167 complex also binds liposomes, indicating that C. albicans expresses two functional BAR heterodimers. We used live-cell imaging to localize green fluorescent protein (GFP)-tagged Rvs167-3 and Rvs167 and show that both proteins concentrate in small cortical spots. However, while Rvs167 strictly colocalizes with the endocytic marker protein Abp1, we do not observe any colocalization of Rvs167-3 with sites of endocytosis marked by Abp1. Furthermore, the rvs167-3Δ/Δ mutant is not defective in endocytosis and strains lacking Rvs167-3 or its partner Rvs162 do not display increased sensitivity to high salt concentrations or decreased cell wall integrity, phenotypes which have been observed for rvs167Δ/Δ and rvs161Δ/Δ strains and which are linked to endocytosis defects. Taken together, our results indicate different roles for the two BAR heterodimers in C. albicans: the canonical Rvs161/Rvs167 heterodimer functions in endocytosis, whereas the novel Rvs162/Rvs167-3 heterodimer seems not to be involved in this process. Nevertheless, despite their different roles, our phenotypic analysis revealed a genetic interaction between the two BAR heterodimers, suggesting that they may have related but distinct membrane-associated functions.
机译:膜重塑是许多重要细胞过程的核心,其介体是含有BAR(Bin,Amphiphysin,Rvs)结构域的蛋白质。我们已经研究了白色念珠菌中Rvs BAR蛋白的多样性和功能,并确定了一个新的家族成员Rvs167-3(orf19.1861)。我们显示Rvs167-3与Rvs162特异性相互作用,形成稳定的BAR异二聚体,能够在体外结合脂质体。第二种不同的异二聚体由典型的BAR蛋白Rvs161和Rvs167形成。纯化的Rvs161 / Rvs167复合物也结合脂质体,表明白色念珠菌表达两种功能性BAR异二聚体。我们使用活细胞成像来定位标记有绿色荧光蛋白(GFP)的Rvs167-3和Rvs167,并显示这两种蛋白都集中在小的皮质斑点中。但是,尽管Rvs167与内吞标记蛋白Abp1严格共定位,但我们没有观察到Rvs167-3与由Abp1标记的内吞作用位点共定位。此外, rvs167-3 Δ/Δ突变体在胞吞作用中无缺陷,缺少Rvs167-3或其伴侣Rvs162的菌株对高盐浓度的敏感性不提高,或细胞壁完整性降低,观察到了 rvs167 Δ/Δ和 rvs161 Δ/Δ菌株,它们与胞吞缺陷有关。两者合计,我们的研究结果表明白色念珠菌中两个BAR异源二聚体的作用不同:典型的Rvs161 / Rvs167异源二聚体在胞吞作用中起作用,而新型Rvs162 / Rvs167-3异源二聚体似乎不参与此过程。尽管如此,尽管它们的作用不同,我们的表型分析还是显示了两个BAR异二聚体之间的遗传相互作用,这表明它们可能具有相关但截然不同的膜相关功能。

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