Suppr超能文献

阿舒假囊酵母中肌动蛋白斑的顶端定位和液泡动态变化取决于WASP同源物Wal1p。

Apical localization of actin patches and vacuolar dynamics in Ashbya gossypii depend on the WASP homolog Wal1p.

作者信息

Walther Andrea, Wendland Jürgen

机构信息

Junior Research Group: Growth-control of Fungal Pathogens, Hans-Knöll Institute for Natural Products Research, Friedrich-Schiller University, Hans-Knöll Strasse 2, 07745 Jena, Germany.

出版信息

J Cell Sci. 2004 Oct 1;117(Pt 21):4947-58. doi: 10.1242/jcs.01377. Epub 2004 Sep 14.

Abstract

Analysis of the Ashbya gossypii Wiskott-Aldrich syndrome-like gene AgWAL1 indicates that it is required for the maintenance of polarized hyphal growth. Growth and organelle dynamics of the wild type and of wal1 and other mutant strains were monitored by in vivo (fluorescence) time-lapse microscopy. Loss of WAL1 led to slow growth and defects in polarized growth that produced swellings in subapical regions, whereas formation of hyphal tips and dichotomous tip branching occurred as in the wild-type. Few actin cables in Agwal1 cells were found to insert into the hyphal tip, but specific clustering of cortical actin patches was observed in subapical regions of hyphal tips instead of at the hyphal apex. Distribution and movement of vacuoles was observed in vivo using FM4-64. In the wild type and in the slowly growing mutant strains bem2 and cla4, which lack a Rho-GTPase-activating protein and a PAK kinase, respectively, early endosomes appeared in the hyphal tip, whereas very few early endosomes and small vacuoles were found in the wal1 mutant hyphal tips, thus linking the cortical patch defect of wal1 hyphae with the distribution of endosomes. Vivid movement of vacuoles seen in the wild type and in the bem2 mutant in subapical regions was largely reduced in the wal1 and cla4 mutants. The tubular structure of mitochondria (as visualized by DIOC6 in vivo) was similar in the wild type and the wal1 mutant, although wal1 mitochondria appeared to be larger. Interestingly, mitochondria were found to insert into the hyphal tips in both strains. Our results indicate a function for Wal1p in filamentous fungi in coordinating actin patch distribution with polarized hyphal tip growth.

摘要

对棉阿舒囊霉中类威斯科特-奥尔德里奇综合征基因AgWAL1的分析表明,它是维持菌丝极性生长所必需的。通过体内(荧光)延时显微镜观察野生型、wal1及其他突变菌株的生长和细胞器动态。WAL1缺失导致生长缓慢和极性生长缺陷,在亚顶端区域产生肿胀,而菌丝顶端的形成和二叉状顶端分支与野生型一样发生。发现Agwal1细胞中很少有肌动蛋白电缆插入菌丝顶端,但在菌丝顶端的亚顶端区域观察到皮质肌动蛋白斑的特定聚集,而不是在菌丝顶端。使用FM4-64在体内观察液泡的分布和移动。在野生型以及分别缺乏Rho-GTP酶激活蛋白和PAK激酶的生长缓慢的突变菌株bem2和cla4中,早期内体出现在菌丝顶端,而在wal1突变菌丝顶端中发现的早期内体和小液泡很少,从而将wal1菌丝的皮质斑缺陷与内体的分布联系起来。在野生型和bem2突变体的亚顶端区域观察到的液泡的活跃移动在wal1和cla4突变体中大大减少。线粒体的管状结构(通过体内DIOC6可视化)在野生型和wal1突变体中相似,尽管wal1线粒体似乎更大。有趣的是,在这两种菌株中都发现线粒体插入菌丝顶端。我们的结果表明Wal1p在丝状真菌中具有将肌动蛋白斑分布与菌丝顶端极性生长协调起来的功能。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验