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菱形蛋白:具有不同生物学功能的保守膜蛋白酶

Rhomboid proteins: conserved membrane proteases with divergent biological functions.

作者信息

Urban Sinisa

机构信息

Department of Molecular Biology and Genetics, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.

出版信息

Genes Dev. 2006 Nov 15;20(22):3054-68. doi: 10.1101/gad.1488606.

Abstract

The rhomboid gene was discovered in Drosophila, where it encodes a seven transmembrane protein that is the signal-generating component of epidermal growth factor (EGF) receptor signaling during development. Although metazoan developmental regulators are rarely conserved outside the animal kingdom, rhomboid proteins are conserved in all kingdoms of life, but the significance of this remains unclear. Recent biochemical reconstitution and high-resolution crystal structures have provided proof that rhomboid proteins function as novel intramembrane proteases, with a serine protease-like catalytic apparatus embedded within the membrane bilayer, buried in a hydrophilic cavity formed by a protein ring. A thorough consideration of all known examples of rhomboid function suggests that, despite biochemical similarity in mechanism and specificity, rhomboid proteins function in diverse processes including quorum sensing in bacteria, mitochondrial membrane fusion, apoptosis, and stem cell differentiation in eukaryotes; rhomboid proteins are also now starting to be linked to human disease, including early-onset blindness, diabetes, and parasitic diseases. Regulating cell signaling is at the heart of rhomboid protein function in many, but not all, of these processes. Further study of these novel enzymes promises to reveal the evolutionary path of rhomboid protein function, which could provide insights into the forces that drive the molecular evolution of regulatory mechanisms.

摘要

菱形基因是在果蝇中发现的,它编码一种七跨膜蛋白,该蛋白是发育过程中表皮生长因子(EGF)受体信号传导的信号生成成分。尽管后生动物发育调节因子在动物界之外很少保守,但菱形蛋白在所有生命王国中都保守,但其意义仍不清楚。最近的生化重建和高分辨率晶体结构证明,菱形蛋白作为新型膜内蛋白酶发挥作用,其丝氨酸蛋白酶样催化装置嵌入膜双层内,埋藏在由蛋白环形成的亲水腔内。对所有已知的菱形蛋白功能实例进行全面考虑表明,尽管在机制和特异性方面存在生化相似性,但菱形蛋白在多种过程中发挥作用,包括细菌中的群体感应、线粒体膜融合、细胞凋亡以及真核生物中的干细胞分化;菱形蛋白现在也开始与人类疾病相关联,包括早发性失明、糖尿病和寄生虫病。在许多但并非所有这些过程中,调节细胞信号传导是菱形蛋白功能的核心。对这些新型酶的进一步研究有望揭示菱形蛋白功能的进化路径,这可能为驱动调节机制分子进化的力量提供见解。

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