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ADP-核糖基化因子1至5缺失对膜运输的亚型选择性作用。

Isoform-selective effects of the depletion of ADP-ribosylation factors 1-5 on membrane traffic.

作者信息

Volpicelli-Daley Laura A, Li Yawei, Zhang Chun-Jiang, Kahn Richard A

机构信息

Department of Biochemistry, Emory University School of Medicine, Atlanta, GA 30322, USA.

出版信息

Mol Biol Cell. 2005 Oct;16(10):4495-508. doi: 10.1091/mbc.e04-12-1042. Epub 2005 Jul 19.

Abstract

The ADP-ribosylation factors (Arfs) are six proteins within the larger Arf family and Ras superfamily that regulate membrane traffic. Arfs all share numerous biochemical activities and have very similar specific activities. The use of dominant mutants and brefeldin A has been important to the discovery of the cellular functions of Arfs but lack specificity between Arf isoforms. We developed small interference RNA constructs capable of specific depletion of each of the cytoplasmic human Arfs to examine the specificity of Arfs in live cells. No single Arf was required for any step of membrane traffic examined in HeLa cells. However, every combination of the double knockdowns of Arf1, Arf3, Arf4, and Arf5 yielded a distinct pattern of defects in secretory and endocytic traffic, demonstrating clear specificity for Arfs at multiple steps. These results suggest that the cooperation of two Arfs at the same site may be a general feature of Arf signaling and provide candidates at several cellular locations that when paired with data on the localization of the many different Arf guanine nucleotide exchange factors, Arf GTPase activating proteins, and effectors will aid in the description of the mechanisms of specificity in this highly conserved and primordial family of regulatory GTPases.

摘要

ADP核糖基化因子(Arfs)是较大的Arf家族和Ras超家族中的六种蛋白质,它们调节膜运输。Arfs都具有许多生化活性,并且具有非常相似的特定活性。显性突变体和布雷菲德菌素A的使用对于发现Arfs的细胞功能很重要,但在Arf亚型之间缺乏特异性。我们开发了能够特异性耗尽每种细胞质人Arfs的小干扰RNA构建体,以研究Arfs在活细胞中的特异性。在HeLa细胞中检测的膜运输的任何步骤都不需要单一的Arf。然而,Arf1、Arf3、Arf4和Arf5的双重敲低的每种组合在分泌和内吞运输中产生了不同的缺陷模式,表明Arfs在多个步骤中具有明显的特异性。这些结果表明,两个Arfs在同一位点的合作可能是Arf信号传导的一个普遍特征,并在几个细胞位置提供了候选者,当与许多不同的Arf鸟嘌呤核苷酸交换因子、Arf GTPase激活蛋白和效应器的定位数据配对时,将有助于描述这个高度保守的原始调节GTPase家族中的特异性机制。

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