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通过重组N-肉豆蔻酰基转移酶高产肉豆蔻酰化的Arf6小GTP酶。

High yield production of myristoylated Arf6 small GTPase by recombinant N-myristoyl transferase.

作者信息

Padovani Dominique, Zeghouf Mahel, Traverso José A, Giglione Carmela, Cherfils Jacqueline

机构信息

Laboratoire d'Enzymologie et Biochimie Structurales, Centre de Recherche de Gif (CNRS), Gif-sur-Yvette, France.

出版信息

Small GTPases. 2013 Jan-Mar;4(1):3-8. doi: 10.4161/sgtp.22895. Epub 2013 Jan 1.

Abstract

Small GTP-binding proteins of the Arf family (Arf GTPases) interact with multiple cellular partners and with membranes to regulate intracellular traffic and organelle structure. Understanding the underlying molecular mechanisms requires in vitro biochemical assays to test for regulations and functions. Such assays should use proteins in their cellular form, which carry a myristoyl lipid attached in N-terminus. N-myristoylation of recombinant Arf GTPases can be achieved by co-expression in E. coli with a eukaryotic N-myristoyl transferase. However, purifying myristoylated Arf GTPases is difficult and has a poor overall yield. Here we show that human Arf6 can be N-myristoylated in vitro by recombinant N-myristoyl transferases from different eukaryotic species. The catalytic efficiency depended strongly on the guanine nucleotide state and was highest for Arf6-GTP. Large-scale production of highly pure N-myristoylated Arf6 could be achieved, which was fully functional for liposome-binding and EFA6-stimulated nucleotide exchange assays. This establishes in vitro myristoylation as a novel and simple method that could be used to produce other myristoylated Arf and Arf-like GTPases for biochemical assays.

摘要

Arf家族的小GTP结合蛋白(Arf GTP酶)与多种细胞伴侣以及膜相互作用,以调节细胞内运输和细胞器结构。要了解其潜在的分子机制,需要进行体外生化分析来测试其调节作用和功能。此类分析应使用细胞形式的蛋白质,这些蛋白质在N端连接有肉豆蔻酰脂质。重组Arf GTP酶的N-肉豆蔻酰化可通过在大肠杆菌中与真核N-肉豆蔻酰转移酶共表达来实现。然而,纯化肉豆蔻酰化的Arf GTP酶很困难,且总体产量很低。在此我们表明,人Arf6可在体外被来自不同真核物种的重组N-肉豆蔻酰转移酶进行N-肉豆蔻酰化。催化效率强烈依赖于鸟嘌呤核苷酸状态,对Arf6-GTP而言最高。可以实现高纯度N-肉豆蔻酰化Arf6的大规模生产,其在脂质体结合和EFA6刺激的核苷酸交换分析中具有完全功能。这确立了体外肉豆蔻酰化作为一种新颖且简单的方法,可用于生产其他用于生化分析的肉豆蔻酰化Arf和Arf样GTP酶。

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