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RAIDD是一种新的“死亡”衔接分子。

RAIDD is a new 'death' adaptor molecule.

作者信息

Duan H, Dixit V M

机构信息

Department of Pathology, University of Michigan Medical School, Ann Arbor 48109, USA.

出版信息

Nature. 1997 Jan 2;385(6611):86-9. doi: 10.1038/385086a0.

Abstract

The effector arm of the cell-death pathway is composed of cysteine proteases belonging to the ICE/CED-3 family. In metazoan cells these exist as inactive polypeptide precursors (zymogens), each composed of a prodomain, which is cleaved to activate the protease, and a large and small catalytic subunit. The coupling of these 'death' proteases to signalling pathways is probably mediated by adaptor molecules that contain protein-protein interaction motifs such as the death domain. Here we describe such an adaptor molecule, RAIDD, which has an unusual bipartite architecture comprising a carboxy-terminal death domain that binds to the homologous domain in RIP, a serine/threonine kinase component of the death pathway. The amino-terminal domain is surprisingly homologous with the sequence of the prodomain of two ICE/CED-3 family members, human ICH-1 (ref. 5) and Caenorhabditis elegans CED-3 (ref. 6). This similar region mediates the binding of RAIDD to ICH-1 and CED-3, serving as a direct link to the death proteases, indicating that the prodomain may, through homophilic interactions, determine the specificity of binding of ICE/CED-3 zymogens to regulatory adaptor molecules. Finally, alternations in the sequence of the N-terminal domain that are equivalent to inactivating mutations in the C. elegans ced-3 gene prevent homophilic binding, highlighting the potentially primordial nature of this interaction.

摘要

细胞死亡途径的效应器臂由属于ICE/CED-3家族的半胱氨酸蛋白酶组成。在后生动物细胞中,这些蛋白酶以无活性的多肽前体(酶原)形式存在,每个酶原都由一个被切割以激活蛋白酶的前结构域以及一个大亚基和一个小亚基组成。这些“死亡”蛋白酶与信号通路的偶联可能是由含有蛋白质-蛋白质相互作用基序(如死亡结构域)的衔接分子介导的。在这里,我们描述了一种这样的衔接分子RAIDD,它具有一种不同寻常的双部分结构,包括一个羧基末端死亡结构域,该结构域与死亡途径的丝氨酸/苏氨酸激酶组分RIP中的同源结构域结合。令人惊讶的是,氨基末端结构域与两个ICE/CED-3家族成员——人类ICH-1(参考文献5)和秀丽隐杆线虫CED-3(参考文献6)的前结构域序列同源。这个相似区域介导RAIDD与ICH-1和CED-3的结合,作为与死亡蛋白酶的直接联系,表明前结构域可能通过同源相互作用决定ICE/CED-3酶原与调节衔接分子结合的特异性。最后,氨基末端结构域序列中的改变等同于秀丽隐杆线虫ced-3基因中的失活突变,阻止了同源结合,突出了这种相互作用潜在的原始性质。

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