首页> 美国卫生研究院文献>Cell Regulation >Apical Sterol-rich Membranes Are Essential for Localizing Cell End Markers That Determine Growth Directionality in the Filamentous Fungus Aspergillus nidulans
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Apical Sterol-rich Membranes Are Essential for Localizing Cell End Markers That Determine Growth Directionality in the Filamentous Fungus Aspergillus nidulans

机译:顶端富含甾醇的膜对于定位决定丝状真菌构巢曲霉生长方向的细胞末端标记至关重要

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摘要

In filamentous fungi, hyphal extension depends on the continuous delivery of vesicles to the growing tip. Here, we describe the identification of two cell end marker proteins, TeaA and TeaR, in Aspergillus nidulans, corresponding to Tea1 and Mod5 in Schizosaccharomyces pombe. Deletion of teaA or teaR caused zig-zag-growing and meandering hyphae, respectively. The Kelch-repeat protein TeaA, the putatively prenylated TeaR protein, and the formin SepA were highly concentrated in the Spitzenkörper, a vesicle transit station at the tip, and localized along the tip membrane. TeaA localization at tips depended on microtubules, and TeaA was required for microtuble convergence in the hyphal apex. The CENP-E family kinesin KipA was necessary for proper localization of TeaA and TeaR, but not for their transportation. TeaA and TeaR localization were interdependent. TeaA interacted in vivo with TeaR, and TeaA colocalized with SepA. Sterol-rich membrane domains localized at the tip in teaA and teaR mutants like in wild type, and filipin treatment caused mislocalization of both proteins. This suggests that sterol-rich membrane domains determine cell end factor destinations and thereby polarized growth.
机译:在丝状真菌中,菌丝的延伸取决于囊泡向生长尖端的连续递送。在这里,我们描述了构巢曲霉中两个细胞末端标记蛋白TeaA和TeaR的鉴定,对应于粟酒裂殖酵母中的Tea1和Mod5。删除teaA或teaR分别导致锯齿形增长和弯曲菌丝。 Kelch重复蛋白TeaA,推定的异戊二烯化TeaR蛋白和FORMIN SepA高度浓缩在尖端的囊泡转运站Spitzenkörper中,并沿尖端膜定位。尖端的TeaA定位取决于微管,而在菌丝尖的微管收敛需要TeaA。 CENP-E家族的驱动蛋白KipA对于TeaA和TeaR的正确定位是必需的,但对于其运输却不是必需的。 TeaA和TeaR本地化是相互依赖的。 TeaA与TeaR在体内相互作用,而TeaA与SepA共定位。像野生型一样,富含tearol的膜结构域位于teaA和teaR突变体的顶端,而菲律宾血脂处理导致这两种蛋白的定位错误。这表明富含固醇的膜结构域决定了细胞末端因子的目的地,从而决定了极化生长。

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