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哺乳动物的Scribble与βPIX交换因子形成紧密复合物。

Mammalian Scribble forms a tight complex with the betaPIX exchange factor.

作者信息

Audebert Stéphane, Navarro Christel, Nourry Claire, Chasserot-Golaz Sylvette, Lécine Patrick, Bellaiche Yohanns, Dupont Jean-Luc, Premont Richard T, Sempéré Christine, Strub Jean-Marc, Van Dorsselaer Alain, Vitale Nicolas, Borg Jean-Paul

机构信息

Molecular Pharmacology, Institut de Recherches sur le Cancer de Marseille, Unite mixte de recherche 599 Inserm-Institut Paoli-Calmettes, 27 Boulevard Leï Roure, 13009 Marseille, France.

出版信息

Curr Biol. 2004 Jun 8;14(11):987-95. doi: 10.1016/j.cub.2004.05.051.

Abstract

Drosophila Scribble is implicated in the development of normal synapse structure and epithelial tissues, but it remains unclear how it plays a role and which process it controls. The mammalian homolog of Scribble, hScrib, has a primary structure and subcellular localization similar to that of its fly homolog, but its function remains unknown. Here we have used tandem mass spectrometry to identify major components of the hScrib network. We show that it includes betaPIX (also called Cool-1), a guanine nucleotide exchange factor (GEF), and its partner GIT1 (also called p95-APP1), a GTPase activating protein (GAP). betaPIX directly binds to the hScrib PDZ domains, and the hScrib/betaPIX complex is efficiently recovered in epithelial and neuronal cells and tissues. In cerebellar granule cell cultures, hScrib and betaPIX are both partially localized at neuronal presynaptic compartments. Furthermore, we show that hScrib is required to anchor betaPIX at the cell cortex and that dominant-negative betaPIX or hScrib proteins can each inhibit Ca2+-dependent exocytosis in neuroendocrine PC12 cells, demonstrating a functional relationship between these proteins. These data reveal the existence of a tight hScrib/betaPIX interaction and suggest that this complex potentially plays a role in neuronal transmission.

摘要

果蝇Scribble与正常突触结构和上皮组织的发育有关,但它如何发挥作用以及控制哪个过程仍不清楚。Scribble的哺乳动物同源物hScrib,其一级结构和亚细胞定位与其果蝇同源物相似,但其功能仍然未知。在这里,我们使用串联质谱法来鉴定hScrib网络的主要成分。我们表明它包括βPIX(也称为Cool-1),一种鸟嘌呤核苷酸交换因子(GEF),及其伴侣GIT1(也称为p95-APP1),一种GTP酶激活蛋白(GAP)。βPIX直接结合到hScrib的PDZ结构域,并且hScrib/βPIX复合物在上皮细胞和神经元细胞及组织中能有效回收。在小脑颗粒细胞培养物中,hScrib和βPIX都部分定位于神经元突触前区室。此外,我们表明hScrib是将βPIX锚定在细胞皮质所必需的,并且显性负性βPIX或hScrib蛋白均可抑制神经内分泌PC12细胞中Ca2+依赖性胞吐作用,证明了这些蛋白之间的功能关系。这些数据揭示了紧密的hScrib/βPIX相互作用的存在,并表明这种复合物可能在神经元传递中发挥作用。

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