首页> 美国卫生研究院文献>Eukaryotic Cell >Endocytic Machinery Protein SlaB Is Dispensable for Polarity Establishment but Necessary for Polarity Maintenance in Hyphal Tip Cells of Aspergillus nidulans
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Endocytic Machinery Protein SlaB Is Dispensable for Polarity Establishment but Necessary for Polarity Maintenance in Hyphal Tip Cells of Aspergillus nidulans

机译:内吞机械蛋白SlaB是必不可少的极性建立但对于曲霉菌的菌丝尖端细胞的极性维持是必要的。

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摘要

The Aspergillus nidulans endocytic internalization protein SlaB is essential, in agreement with the key role in apical extension attributed to endocytosis. We constructed, by gene replacement, a nitrate-inducible, ammonium-repressible slaB1 allele for conditional SlaB expression. Video microscopy showed that repressed slaB1 cells are able to establish but unable to maintain a stable polarity axis, arresting growth with budding-yeast-like morphology shortly after initially normal germ tube emergence. Using green fluorescent protein (GFP)-tagged secretory v-SNARE SynA, which continuously recycles to the plasma membrane after being efficiently endocytosed, we establish that SlaB is crucial for endocytosis, although it is dispensable for the anterograde traffic of SynA and of the t-SNARE Pep12 to the plasma and vacuolar membrane, respectively. By confocal microscopy, repressed slaB1 germlings show deep plasma membrane invaginations. Ammonium-to-nitrate medium shift experiments demonstrated reversibility of the null polarity maintenance phenotype and correlation of normal apical extension with resumption of SynA endocytosis. In contrast, SlaB downregulation in hyphae that had progressed far beyond germ tube emergence led to marked polarity maintenance defects correlating with deficient SynA endocytosis. Thus, the strict correlation between abolishment of endocytosis and disability of polarity maintenance that we report here supports the view that hyphal growth requires coupling of secretion and endocytosis. However, downregulated slaB1 cells form F-actin clumps containing the actin-binding protein AbpA, and thus F-actin misregulation cannot be completely disregarded as a possible contributor to defective apical extension. Latrunculin B treatment of SlaB-downregulated tips reduced the formation of AbpA clumps without promoting growth and revealed the formation of cortical “comets” of AbpA.
机译:构巢曲霉胞吞内在化蛋白SlaB是必不可少的,这与归因于胞吞作用的根尖延伸的关键作用相一致。通过基因置换,我们构建了硝酸盐诱导型,铵离子抑制型slaB1等位基因,用于条件性SlaB表达。视频显微镜显示,受压的slaB1细胞能够建立但无法维持稳定的极性轴,在最初正常的生殖管出现后不久就以芽孢状酵母样的形态阻止生长。使用标记有绿色荧光蛋白(GFP)的分泌性v-SNARE SynA(在被有效地内吞后不断循环到质膜上),我们确定SlaB对于内吞作用至关重要,尽管它对于SynA和t的顺行运输是必不可少的-SNARE Pep12分别质膜和液泡膜。通过共聚焦显微镜,被抑制的slaB1幼苗显示出深层的质膜内陷。铵盐至硝酸盐的中等迁移实验证明了零极性维持表型的可逆性以及正常根尖延伸与SynA内吞作用恢复的相关性。相反,SlaB在菌丝中的下调已经远远超出了胚芽管的出现,从而导致明显的极性维持缺陷,与缺陷的SynA内吞作用相关。因此,我们在这里报道的内吞作用的废除与极性维持障碍之间的严格相关性支持以下观点:菌丝生长需要分泌和内吞作用的耦合。但是,下调的slaB1细胞形成包含肌动蛋白结合蛋白AbpA的F-肌动蛋白团块,因此不能完全忽略F-肌动蛋白的失调,这可能是导致根尖延伸不良的原因。用Latrunculin B处理SlaB下调的尖端可减少AbpA团块的形成,而不会促进其生长,并且揭示了AbpA皮质“彗星”的形成。

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