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Nd6p,一种具有类RCC1结构域的新型蛋白质,参与四膜虫的胞吐作用。

Nd6p, a novel protein with RCC1-like domains involved in exocytosis in Paramecium tetraurelia.

作者信息

Gogendeau Delphine, Keller Anne-Marie, Yanagi Akira, Cohen Jean, Koll France

机构信息

Centre de Génétique Moléculaire, CNRS, 1 avenue de la terrasse, 91198 Gif-sur-Yvette, France.

出版信息

Eukaryot Cell. 2005 Dec;4(12):2129-39. doi: 10.1128/EC.4.12.2129-2139.2005.

Abstract

In Paramecium tetraurelia, the regulated secretory pathway of dense core granules called trichocysts can be altered by mutation and genetically studied. Seventeen nondischarge (ND) genes controlling exocytosis have already been identified by a genetic approach. The site of action of the studied mutations is one of the three compartments, the cytosol, trichocyst, or plasma membrane. The only ND genes cloned to date correspond to mutants affected in the cytosol or in the trichocyst compartment. In this work, we investigated a representative of the third compartment, the plasma membrane, by cloning the ND6 gene. This gene encodes a 1,925-amino-acid protein containing two domains homologous to the regulator of chromosome condensation 1 (RCC1). In parallel, 10 new alleles of the ND6 gene were isolated. Nine of the 12 available mutations mapped in the RCC1-like domains, showing their importance for the Nd6 protein (Nd6p) function. The RCC1 protein is well known for its guanine exchange factor activity towards the small GTPase Ran but also for its involvement in membrane fusion during nuclear envelope assembly. Other proteins with RCC1-like domains are also involved in intracellular membrane fusion, but none has been described yet as involved in exocytosis. The case of Nd6p is thus the first report of such a protein with a documented role in exocytosis.

摘要

在四膜虫中,称为刺丝泡的致密核心颗粒的调节性分泌途径可因突变而改变并进行遗传学研究。通过遗传学方法已经鉴定出17个控制胞吐作用的非释放(ND)基因。所研究突变的作用位点是三个区室之一,即胞质溶胶、刺丝泡或质膜。迄今为止克隆的唯一ND基因对应于在胞质溶胶或刺丝泡区室中受影响的突变体。在这项工作中,我们通过克隆ND6基因来研究第三个区室(质膜)的一个代表。该基因编码一种含有1925个氨基酸的蛋白质,该蛋白质包含两个与染色体凝聚调节因子1(RCC1)同源的结构域。同时,分离出了10个新的ND6基因等位基因。12个可用突变中的9个定位于RCC1样结构域,表明它们对Nd6蛋白(Nd6p)功能的重要性。RCC1蛋白以其对小GTP酶Ran的鸟嘌呤交换因子活性以及在核膜组装过程中参与膜融合而闻名。其他具有RCC1样结构域的蛋白质也参与细胞内膜融合,但尚未有报道称其参与胞吐作用。因此,Nd6p的情况是此类蛋白在胞吐作用中具有记录作用的首次报道。

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