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人 CAD 的二氢乳清酸酶结构域的结构、功能特征和进化。

Structure, functional characterization, and evolution of the dihydroorotase domain of human CAD.

机构信息

Structural Bases of Genome Integrity Group, Structural Biology and Biocomputing Programme, Spanish National Cancer Research Centre (CNIO), 28029 Madrid, Spain.

Structural Bases of Genome Integrity Group, Structural Biology and Biocomputing Programme, Spanish National Cancer Research Centre (CNIO), 28029 Madrid, Spain.

出版信息

Structure. 2014 Feb 4;22(2):185-98. doi: 10.1016/j.str.2013.10.016. Epub 2013 Dec 12.

Abstract

Upregulation of CAD, the multifunctional protein that initiates and controls the de novo biosynthesis of pyrimidines in animals, is essential for cell proliferation. Deciphering the architecture and functioning of CAD is of interest for its potential usage as an antitumoral target. However, there is no detailed structural information about CAD other than that it self-assembles into hexamers of ∼1.5 MDa. Here we report the crystal structure and functional characterization of the dihydroorotase domain of human CAD. Contradicting all assumptions, the structure reveals an active site enclosed by a flexible loop with two Zn²⁺ ions bridged by a carboxylated lysine and a third Zn coordinating a rare histidinate ion. Site-directed mutagenesis and functional assays prove the involvement of the Zn and flexible loop in catalysis. Comparison with homologous bacterial enzymes supports a reclassification of the DHOase family and provides strong evidence against current models of the architecture of CAD.

摘要

CAD 的上调是动物中启动和控制嘧啶从头生物合成的多功能蛋白,对细胞增殖至关重要。阐明 CAD 的结构和功能因其可能被用作抗肿瘤靶标而受到关注。然而,除了它自身组装成约 1.5 MDa 的六聚体之外,CAD 没有详细的结构信息。在这里,我们报告了人 CAD 的二氢乳清酸酶结构域的晶体结构和功能特征。与所有假设相反,该结构揭示了一个由一个灵活的环封闭的活性位点,其中两个 Zn²⁺离子由一个羧化的赖氨酸桥接,第三个 Zn 配位一个罕见的组氨酸盐离子。定点突变和功能分析证明 Zn 和灵活环在催化中起作用。与同源细菌酶的比较支持 DHOase 家族的重新分类,并为反对当前 CAD 结构模型提供了有力证据。

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