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首页> 外文期刊>Molecular biology of the cell >Yeast-to-hyphal transition triggers formin-dependent golgi localization to the growing tip in Candida albicans
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Yeast-to-hyphal transition triggers formin-dependent golgi localization to the growing tip in Candida albicans

机译:酵母菌到菌丝的转变触发了依赖白蛋白的高尔基体定位到白色念珠菌的生长尖端

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摘要

Rapid and long-distance secretion of membrane components is critical for hyphal formation in filamentous fungi, but the mechanisms responsible for polarized trafficking are not well understood. Here, we demonstrate that in Candida albicans, the majority of the Golgi complex is redistributed to the distal region during hyphal formation. Randomly distributed Golgi puncta in yeast cells cluster toward the growing tip during hyphal formation, remain associated with the distal portion of the filament during its extension, and are almost absent from the cell body. This restricted Golgi localization pattern is distinct from other organelles, including the endoplasmic reticulum, vacuole and mitochondria, which remain distributed throughout the cell body and hypha. Hyphal-induced positioning of the Golgi and the maintenance of its structural integrity requires actin cytoskeleton, but not microtubules. Absence of the formin Bni1 causes a hyphal-specific dispersal of the Golgi into a haze of finely dispersed vesicles with a sedimentation density no different from that of normal Golgi. These results demonstrate the existence of a hyphal-specific, Bni1-dependent cue for Golgi integrity and positioning at the distal portion of the hyphal tip, and suggest that filamentous fungi have evolved a novel strategy for polarized secretion, involving a redistribution of the Golgi to the growing tip.
机译:膜成分的快速和远距离分泌对于丝状真菌中的菌丝形成至关重要,但是导致极化运输的机制尚不清楚。在这里,我们证明了在白色念珠菌中,高尔基体的大部分在菌丝形成过程中重新分布到远端区域。在菌丝形成过程中,酵母细胞中随机分布的高尔基点朝着生长的尖端聚集,在长丝延伸过程中仍与长丝的远端相关,几乎不存在于细胞体中。这种受限制的高尔基体定位模式不同于其他细胞器,包括内质网,液泡和线粒体,它们仍然分布在整个细胞体和菌丝中。菌丝诱导的高尔基体定位及其结构完整性的维持需要肌动蛋白的细胞骨架,而不是微管。缺乏福尔明Bni1会导致高尔基体的菌丝特异性分散,变成细小囊泡的雾状,其沉淀密度与正常高尔基体的沉淀密度相同。这些结果表明,存在针对高尔基体完整性和菌丝末端远端的菌丝特异性,Bni1依赖性提示,并且表明丝状真菌已经进化出一种新的极化分泌策略,涉及将高尔基体重新分布为越来越多的提示。

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