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布雷菲德菌素A-ADP-核糖基化底物的分子克隆与功能表征。一种参与高尔基体结构维持的新蛋白。

Molecular cloning and functional characterization of brefeldin A-ADP-ribosylated substrate. A novel protein involved in the maintenance of the Golgi structure.

作者信息

Spanò S, Silletta M G, Colanzi A, Alberti S, Fiucci G, Valente C, Fusella A, Salmona M, Mironov A, Luini A, Corda D

机构信息

Istituto di Ricerche Farmacologiche "Mario Negri", Department of Cell Biology and Oncology, Consorzio Mario Negri Sud, 66030 Santa Maria Imbaro (Chieti), 20157 Milano, Italy.

出版信息

J Biol Chem. 1999 Jun 18;274(25):17705-10. doi: 10.1074/jbc.274.25.17705.

Abstract

Brefeldin A (BFA) is a fungal metabolite that disassembles the Golgi apparatus into tubular networks and causes the dissociation of coatomer proteins from Golgi membranes. We have previously shown that an additional effect of BFA is to stimulate the ADP-ribosylation of two cytosolic proteins of 38 and 50 kDa (brefeldin A-ADP-riboslyated substrate (BARS)) and that this effect greatly facilitates the Golgi-disassembling activity of the toxin. In this study, BARS has been purified from rat brain cytosol and microsequenced, and the BARS cDNA has been cloned. BARS shares high homology with two known proteins, C-terminal-binding protein 1 (CtBP1) and CtBP2. It is therefore a third member of the CtBP family. The role of BARS in Golgi disassembly by BFA was verified in permeabilized cells. In the presence of dialyzed cytosol that had been previously depleted of BARS or treated with an anti-BARS antibody, BFA potently disassembled the Golgi. However, in cytosol complemented with purified BARS, or even in control cytosols containing physiological levels of BARS, the action of BFA on Golgi disassembly was strongly inhibited. These results suggest that BARS exerts a negative control on Golgi tubulation, with important consequences for the structure and function of the Golgi complex.

摘要

布雷菲德菌素A(BFA)是一种真菌代谢产物,它能将高尔基体拆解成管状网络,并导致衣被蛋白从高尔基体膜上解离。我们之前已经表明,BFA的另一个作用是刺激两种分子量分别为38 kDa和50 kDa的胞质蛋白(布雷菲德菌素A-ADP核糖基化底物(BARS))的ADP核糖基化,并且这种作用极大地促进了毒素的高尔基体拆解活性。在本研究中,已从大鼠脑胞质溶胶中纯化出BARS并进行了微量测序,还克隆了BARS cDNA。BARS与两种已知蛋白,即C末端结合蛋白1(CtBP1)和CtBP2具有高度同源性。因此,它是CtBP家族的第三个成员。在通透细胞中验证了BARS在BFA介导的高尔基体拆解中的作用。在预先去除了BARS或用抗BARS抗体处理过的透析胞质溶胶存在的情况下,BFA能有效地拆解高尔基体。然而,在补充了纯化的BARS的胞质溶胶中,甚至在含有生理水平BARS的对照胞质溶胶中,BFA对高尔基体拆解的作用受到强烈抑制。这些结果表明,BARS对高尔基体形成管状结构发挥负向调控作用,这对高尔基体复合体的结构和功能具有重要影响。

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