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一种类Rab4 GTP酶在盘基网柄菌内吞作用以及收缩泡结构与功能调控中的作用。

A role for a Rab4-like GTPase in endocytosis and in regulation of contractile vacuole structure and function in Dictyostelium discoideum.

作者信息

Bush J, Temesvari L, Rodriguez-Paris J, Buczynski G, Cardelli J

机构信息

Department of Microbiology and Immunology, Louisiana State University Medical Center, Shreveport 71130, USA.

出版信息

Mol Biol Cell. 1996 Oct;7(10):1623-38. doi: 10.1091/mbc.7.10.1623.

Abstract

The small Mr Rab4-like GTPase, RabD, localizes to the endosomal pathway and the contractile vacuole membrane system in Dictyostelium discoideum. Stably transformed cell lines overexpressing a dominant negative functioning RabD internalized fluid phase marker at 50% of the rate of wild-type cells. Mutant cells were also slower at recycling internalized fluid. Microscopic and biochemical approaches indicated that the transport of fluid to large postlysosome vacuoles was delayed in mutant cells, resulting in an accumulation in acidic smaller vesicles, probably lysosomes. Also, RabD N121I-expressing cell lines missorted a small but significant percentage of newly synthesized lysosomal alpha-mannosidase precursor polypeptides. However, the majority of the newly synthesized alpha-mannosidase was transported with normal kinetics and correctly delivered to lysosomes. Subcellular fractionation and immunofluorescent microscopy indicated that in mutant cells contractile vacuole membrane proteins were associated with compartments morphologically distinct from the normal reticular network. Osmotic tests revealed that the contractile vacuole functioned inefficiently in mutant cells. Our results suggest that RabD regulates membrane traffic along the endosomal pathway, and that this GTPase may play a role in regulating the structure and function of the contractile vacuole system by facilitating communication with the endosomal pathway.

摘要

小型类Rab4 GTP酶RabD定位于盘基网柄菌的内体途径和收缩泡膜系统。过表达显性负功能RabD的稳定转化细胞系内化液相标记物的速率仅为野生型细胞的50%。突变细胞在回收内化液体方面也较慢。显微镜和生化方法表明,突变细胞中液体向大型溶酶体后液泡的运输延迟,导致酸性较小囊泡(可能是溶酶体)中出现积累。此外,表达RabD N121I的细胞系错误分选了一小部分但比例可观的新合成溶酶体α-甘露糖苷酶前体多肽。然而,大多数新合成的α-甘露糖苷酶以正常动力学进行运输并正确递送至溶酶体。亚细胞分级分离和免疫荧光显微镜检查表明,在突变细胞中,收缩泡膜蛋白与形态上不同于正常网状网络的区室相关联。渗透试验表明,突变细胞中收缩泡的功能效率低下。我们的结果表明,RabD调节内体途径中的膜运输,并且这种GTP酶可能通过促进与内体途径的通讯在调节收缩泡系统的结构和功能中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55d5/276010/0f5ba07d6b95/mbc00017-0155-a.jpg

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