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Ras1-Induced Hyphal Development in Candida albicans Requires the Formin Bni1

机译:Ras1诱导的白色念珠菌菌丝发育需要Formin Bni1

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Formins are downstream effector proteins of Rho-type GTPases and are involved in the organization of the actin cytoskeleton and actin cable assembly at sites of polarized cell growth. Here we show using in vivo time-lapse microscopy that deletion of the Candida albicans formin homolog BNI1 results in polarity defects during yeast growth and hyphal stages. Deletion of the second C. albicans formin, BNR1, resulted in elongated yeast cells with cell separation defects but did not interfere with the ability of bnr1 cells to initiate and maintain polarized hyphal growth. Yeast bni1 cells were swollen, showed an increased random budding pattern, and had a severe defect in cytokinesis, with enlarged bud necks. Induction of hyphal development in bni1 cells resulted in germ tube formation but was halted at the step of polarity maintenance. Bni1-green fluorescent protein is found persistently at the hyphal tip and colocalizes with a structure resembling the Spitzenk?rper of true filamentous fungi. Introduction of constitutively active ras1G13V in the bni1 strain or addition of cyclic AMP to the growth medium did not bypass bni1 hyphal growth defects. Similarly, these agents were not able to suppress hyphal growth defects in the wal1 mutant which is lacking the Wiskott-Aldrich syndrome protein (WASP) homolog. These results suggest that the maintenance of polarized hyphal growth in C. albicans requires coordinated regulation of two actin cytoskeletal pathways, including formin-mediated secretion and WASP-dependent endocytosis.
机译:Formin是Rho型GTPases的下游效应蛋白,参与极化细胞生长部位的肌动蛋白细胞骨架和肌动蛋白电缆组件的组织。在这里,我们使用体内延时显微镜显示了白色念珠菌 formin同源物 BNI1 的缺失在酵母生长和菌丝阶段导致极性缺陷。删除第二个 C。白色念珠菌 BNR1 产生具有细胞分离缺陷的细长酵母细胞,但不干扰 bnr1 细胞启动和维持极化菌丝生长的能力。酵母菌bem1 细胞肿胀,显示出随机的出芽模式,胞质分裂严重缺陷,芽颈增大。 bni1 细胞中菌丝发育的诱导导致胚管形成,但在维持极性的步骤中被终止。 Bni1-绿色荧光蛋白持久存在于菌丝尖端,并与真丝真菌的Spitzenkrper结构相似。在 bni1 菌株中引入组成型活性 ras1 G13V 或向生长培养基中添加环AMP都没有绕过 bni1 菌丝生长缺陷。同样,这些药物也不能抑制缺少Wiskott-Aldrich综合征蛋白(WASP)同源物的 wal1 突变体中的菌丝生长缺陷。这些结果表明在 C中维持极化的菌丝生长。白色念珠菌需要协调两个肌动蛋白细胞骨架途径的调控,包括福尔明介导的分泌和依赖WASP的胞吞作用。

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