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首页> 外文期刊>Molecular biology of the cell >The Neurospora crassa exocyst complex tethers Spitzenk?rper vesicles to the apical plasma membrane during polarized growth
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The Neurospora crassa exocyst complex tethers Spitzenk?rper vesicles to the apical plasma membrane during polarized growth

机译:在极化生长过程中,神经孢子囊外囊复合物将Spitzenk?rper囊泡束缚至顶端质膜

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Fungal hyphae are among the most highly polarized cells. Hyphal polarized growth is supported by tip-directed transport of secretory vesicles, which accumulate temporarily in a stratified manner in an apical vesicle cluster, the Spitzenk?rper. The exocyst complex is required for tethering of secretory vesicles to the apical plasma membrane. We determined that the presence of an octameric exocyst complex is required for the formation of a functional Spitzenk?rper and maintenance of regular hyphal growth in Neurospora crassa . Two distinct localization patterns of exocyst subunits at the hyphal tip suggest the dynamic formation of two assemblies. The EXO-70/EXO-84 subunits are found at the peripheral part of the Spitzenk?rper, which partially coincides with the outer macrovesicular layer, whereas exocyst components SEC-5, -6, -8, and -15 form a delimited crescent at the apical plasma membrane. Localization of SEC-6 and EXO-70 to the plasma membrane and the Spitzenk?rper, respectively, depends on actin and microtubule cytoskeletons. The apical region of exocyst-mediated vesicle fusion, elucidated by the plasma membrane–associated exocyst subunits, indicates the presence of an exocytotic gradient with a tip-high maximum that dissipates gradually toward the subapex, confirming the earlier predictions of the vesicle supply center model for hyphal morphogenesis.
机译:真菌菌丝是极化程度最高的细胞之一。菌丝极化生长受到分泌囊泡的尖端定向运输的支持,该分泌囊泡以分层方式暂时堆积在顶囊泡簇Spitzenkrper中。囊外复合物是分泌性小泡束缚至顶质膜所必需的。我们确定存在八聚体囊外复合物是功能性Spitzenkrper的形成和维持神经孢菌的正常菌丝生长所必需的。菌丝尖端的囊外亚基的两个不同的定位模式表明两个组件的动态形成。 EXO-70 / EXO-84亚基存在于Spitzenkrper的外围部分,与外部大泡囊层部分重合,而囊泡成分SEC-5,-6,-8和-15则形成了限定的新月形在顶质膜SEC-6和EXO-70分别定位于质膜和Spitzenkrper,取决于肌动蛋白和微管细胞骨架。由胞膜相关的囊外亚基阐明的囊外介导的囊泡融合的顶端区域,表明存在胞外梯度,其尖端最高最大值逐渐消散至近端,从而证实了囊泡供应中心模型的早期预测用于菌丝形态发生。

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