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发出未折叠蛋白反应信号的蛋白激酶/核糖核酸内切酶IRE1α具有一个腔内N端非配体依赖性二聚化结构域。

The protein kinase/endoribonuclease IRE1alpha that signals the unfolded protein response has a luminal N-terminal ligand-independent dimerization domain.

作者信息

Liu Chuan Yin, Wong Hetty N, Schauerte Joseph A, Kaufman Randal J

机构信息

Howard Hughes Medical Institute, Department of Biological Chemistry, University of Michigan Medical School, Ann Arbor, Michigan 48109-0650, USA.

出版信息

J Biol Chem. 2002 May 24;277(21):18346-56. doi: 10.1074/jbc.M112454200. Epub 2002 Mar 15.

Abstract

In response to accumulation of unfolded proteins in the endoplasmic reticulum (ER), cells activate an intracellular signal transduction pathway called the unfolded protein response (UPR). IRE and PERK are the two type-I ER transmembrane protein kinase receptors that signal the UPR. The N-terminal luminal domains (NLDs) of IRE1 and PERK sense ER stress conditions by a common mechanism and transmit the signal to regulate the cytoplasmic domains of these receptors. To provide an experimental system amenable to detailed biochemical and structural analysis to elucidate the mechanism of ER-transmembrane signaling mechanism mediated by the NLD, we overexpressed the soluble luminal domain of human IRE1alpha in COS-1 cells by transient DNA transfection. Here we report the expression, purification, and characterization of the soluble NLD. The biological function of the NLD was confirmed by its ability to associate with itself and to interact with both the membrane-bound full-length IRE1alpha receptor and the ER chaperone BiP. Functional and spectral studies suggested that the highly conserved N-linked glycosylation site is not required for proper protein folding and self-association. Interestingly, we demonstrated that the NLD forms stable dimers linked by intermolecular disulfide bridges. Our data support that the luminal domain represents a novel ligand-independent dimerization domain.

摘要

为应对内质网(ER)中未折叠蛋白的积累,细胞会激活一种名为未折叠蛋白反应(UPR)的细胞内信号转导途径。IRE1和PERK是两种发出UPR信号的I型内质网跨膜蛋白激酶受体。IRE1和PERK的N端腔结构域(NLDs)通过一种共同机制感知内质网应激条件,并传递信号以调节这些受体的细胞质结构域。为了提供一个适合进行详细生化和结构分析的实验系统,以阐明由NLD介导的内质网跨膜信号传导机制,我们通过瞬时DNA转染在COS-1细胞中过表达了人IRE1α的可溶性腔结构域。在此,我们报告了可溶性NLD的表达、纯化及特性。NLD与自身结合以及与膜结合的全长IRE1α受体和内质网伴侣BiP相互作用的能力证实了其生物学功能。功能和光谱研究表明,高度保守的N-连接糖基化位点对于正确的蛋白质折叠和自我缔合并非必需。有趣的是,我们证明NLD通过分子间二硫键形成稳定的二聚体。我们的数据支持腔结构域代表一种新型的不依赖配体的二聚化结构域。

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