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Rab7:晚期内吞膜运输的重要调节因子。

Rab 7: an important regulator of late endocytic membrane traffic.

作者信息

Feng Y, Press B, Wandinger-Ness A

机构信息

Department of Biochemistry, Molecular Biology and Cell Biology, Northwestern University, Evanston, Illinois 60208-3500, USA.

出版信息

J Cell Biol. 1995 Dec;131(6 Pt 1):1435-52. doi: 10.1083/jcb.131.6.1435.

Abstract

Rab5 and rab7 proteins belong to a superfamily of small molecular weight GTPases known to be associated with early and late endosomes, respectively. The rab5 protein plays an important regulatory role in early endocytosis, yet the function of rab7 protein was previously uncharacterized. This question was addressed by comparing the kinetics of vesicular stomatitis virus (VSV) G protein internalization in baby hamster kidney cells overexpressing wild-type or dominant negative mutant forms of the rab7 protein (rab7N125I and rab7T22N). Overexpression of wild-type rab7 protein allowed normal transport to late endosomes (mannose 6-phosphate receptor positive), while the rab7N125I mutant caused the VSV G protein to accumulate specifically in early (transferrin receptor positive) endosomes. Horseradish peroxidase and paramyxovirus SV5 hemagglutinin-neuraminidase (HN) were used in quantitative biochemical assays to further demonstrate that rab7 function was not required for early internalization events, but was crucial in downstream degradative events. The characteristic cleavage of SV5 HN in the late endosome distinguishes internalization from transport to later stages of the endocytic pathway. Mutant rab7N125I or rab7T22N proteins had no effect on the internalization of either horseradish peroxidase or SV5 HN protein. In contrast, the mutant proteins markedly inhibited the subsequent cleavage of the SV5 HN protein. Taken together, these data support a key role for rab7, downstream of rab5, in regulating membrane transport leading from early to late endosomes. We compare our findings to those obtained for the yeast homologues Ypt51p, Ypt52p, Ypt53p, and Ypt7p.

摘要

Rab5和rab7蛋白属于小分子重量GTP酶超家族,已知分别与早期和晚期内体相关。rab5蛋白在早期内吞作用中发挥重要调节作用,而rab7蛋白的功能此前未被阐明。通过比较水泡性口炎病毒(VSV)G蛋白在过表达野生型或显性负性突变形式rab7蛋白(rab7N125I和rab7T22N)的幼仓鼠肾细胞中的内化动力学,解决了这个问题。野生型rab7蛋白的过表达允许正常转运至晚期内体(甘露糖6 - 磷酸受体阳性),而rab7N125I突变体导致VSV G蛋白特异性积聚在早期(转铁蛋白受体阳性)内体中。在定量生化分析中使用辣根过氧化物酶和副粘病毒SV5血凝素 - 神经氨酸酶(HN)进一步证明,rab7功能对于早期内化事件不是必需的,但在下游降解事件中至关重要。晚期内体中SV5 HN的特征性切割将内化与内吞途径后期阶段的转运区分开来。突变型rab7N125I或rab7T22N蛋白对辣根过氧化物酶或SV5 HN蛋白的内化均无影响。相反,突变蛋白显著抑制了SV5 HN蛋白随后的切割。综上所述,这些数据支持rab7在rab5下游,在调节从早期到晚期内体的膜转运中起关键作用。我们将我们的发现与酵母同源物Ypt51p、Ypt52p、Ypt53p和Ypt7p的发现进行了比较。

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