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构巢曲霉早期内体在微管轨道上的长距离移动。

Long-distance movement of Aspergillus nidulans early endosomes on microtubule tracks.

作者信息

Abenza Juan F, Pantazopoulou Areti, Rodríguez José M, Galindo Antonio, Peñalva Miguel A

机构信息

Departamento de Microbiología Molecular, Centro de Investigaciones Biológicas CSIC, Ramiro de Maeztu 9, Madrid, Spain.

出版信息

Traffic. 2009 Jan;10(1):57-75. doi: 10.1111/j.1600-0854.2008.00848.x. Epub 2008 Oct 29.

Abstract

In fungal hyphal cells, intracellular membrane trafficking is constrained by the relatively long intracellular distances and the mode of growth, exclusively by apical extension. Endocytosis plays a key role in hyphal tip growth, which involves the coupling of secretory membrane delivery to the apical region with subapical compensatory endocytosis. However, the identity, dynamics and function of filamentous fungal endosomal compartments remain largely unexplored. Aspergillus nidulans RabA(Rab5) localizes to a population of endosomes that show long range bidirectional movement on microtubule (MT) tracks and are labelled with FM4-64 shortly after dye internalization. RabA(Rab5) membranes do not overlap with largely static mature endosomes/vacuoles. Impaired delivery of dynein to the MT plus ends or downregulation of cytoplasmic dynein using the dynein heavy chain nudA1(ts)mutation results in accumulation of RabA(Rab5) endosomal membranes in an abnormal NudA1 compartment at the tip, strongly supporting the existence in A. nidulans hyphal tips of a dynein loading region. We show that the SynA synaptobrevin endocytic recycling cargo traffics through this region, which strongly supports the contention that polarized hyphal growth involves the association of endocytic recycling with the plus ends of MTs located at the tip, near the endocytic internalization collar.

摘要

在真菌菌丝细胞中,细胞内膜运输受到相对较长的细胞内距离和生长模式(仅通过顶端延伸)的限制。内吞作用在菌丝顶端生长中起关键作用,这涉及分泌性膜向顶端区域的递送与顶端下补偿性内吞作用的耦合。然而,丝状真菌内体区室的身份、动态和功能在很大程度上仍未被探索。构巢曲霉RabA(Rab5)定位于一群内体,这些内体在微管(MT)轨道上显示长距离双向移动,并在染料内化后不久被FM4-64标记。RabA(Rab5)膜与基本静止的成熟内体/液泡不重叠。动力蛋白向MT正端的递送受损或使用动力蛋白重链nudA1(ts)突变下调细胞质动力蛋白会导致RabA(Rab5)内体膜在顶端异常的NudA1区室中积累,这有力地支持了构巢曲霉菌丝顶端存在动力蛋白装载区的观点。我们表明,SynA突触融合蛋白内吞循环货物通过该区域运输,这有力地支持了极化菌丝生长涉及内吞循环与位于顶端、靠近内吞内化环的MT正端相关联的观点。

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