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单体二氢嘧啶酶和人源二氢乳清酸酶结构域 K1556A 突变体的晶体结构显示活性位点内没有赖氨酸的氨甲酰化。

Crystal structures of monometallic dihydropyrimidinase and the human dihydroorotase domain K1556A mutant reveal no lysine carbamylation within the active site.

机构信息

School of Biomedical Sciences, Chung Shan Medical University, No.110, Sec.1, Chien-Kuo N. Rd., Taichung City, Taiwan.

School of Biomedical Sciences, Chung Shan Medical University, No.110, Sec.1, Chien-Kuo N. Rd., Taichung City, Taiwan; School of Medicine, College of Medicine, Chung Shan Medical University, No. 110, Sec. 1, Chien-Kuo N. Rd., Taichung City, Taiwan.

出版信息

Biochem Biophys Res Commun. 2018 Oct 28;505(2):439-444. doi: 10.1016/j.bbrc.2018.09.153. Epub 2018 Sep 27.

Abstract

Dihydropyrimidinase (DHPase) is a member of the cyclic amidohydrolase family, which also includes allantoinase, dihydroorotase (DHOase), hydantoinase, and imidase. Almost all of these zinc metalloenzymes possess a binuclear metal center in which two metal ions are bridged by a post-translational carbamylated Lys. Crystal structure of Tetraodon nigroviridis DHPase reveals that one zinc ion is sufficient to stabilize Lys carbamylation. In this study, we found that one metal coordination was not sufficient to fix CO to the Lys in bacterial DHPase. We prepared and characterized mono-Zn DHPase from Pseudomonas aeruginosa (PaDHPase), and the catalytic activity of mono-Zn PaDHPase was not detected. The crystal structure of mono-Zn PaDHPase determined at 2.23 Å resolution (PDB entry 6AJD) revealed that Lys150 was no longer carbamylated. This finding indicated the decarbamylation of the Lys during the metal chelating process. To confirm the state of Lys carbamylation in mono-Zn PaDHPase in solution, mass spectrometric (MS) analysis was carried out. The MS result was in agreement with the theoretical value for uncarbamylated PaDHPase. Crystal structure of the human DHOase domain (huDHOase) K1556A mutant was also determined (PDB entry 5YNZ), and the structure revealed that the active site of huDHOase K1556A mutant contained one metal ion. Like mono-Zn PaDHPase, oxygen ligands of the carbamylated Lys were not required for Znα binding. Considering the collective data from X-ray crystal structure and MS analysis, mono-Zn PaDHPase in both crystalline state and solution was not carbamylated. In addition, structural evidences indicated that post-translational carbamylated Lys was not required for Znα binding in PaDHPase and in huDHOase.

摘要

二氢嘧啶酶 (DHPase) 是环酰胺水解酶家族的成员,该家族还包括尿囊素酶、二氢乳清酸酶 (DHOase)、海因酶和亚氨二酶。几乎所有这些锌金属酶都具有双核金属中心,其中两个金属离子由翻译后氨甲酰化的赖氨酸桥接。Tetraodon nigroviridis DHPase 的晶体结构表明,一个锌离子足以稳定赖氨酸的氨甲酰化。在这项研究中,我们发现一个金属配位不足以将 CO 固定到细菌 DHPase 中的赖氨酸上。我们制备并表征了铜绿假单胞菌 (PaDHPase) 的单锌 DHPase,并且未检测到单锌 PaDHPase 的催化活性。分辨率为 2.23 Å 的单锌 PaDHPase 晶体结构(PDB 条目 6AJD)表明 Lys150 不再氨甲酰化。这一发现表明 Lys 在金属螯合过程中去氨甲酰化。为了确认单锌 PaDHPase 在溶液中 Lys 氨甲酰化的状态,进行了质谱 (MS) 分析。MS 结果与未经氨甲酰化的 PaDHPase 的理论值一致。还确定了人 DHOase 结构域 (huDHOase) K1556A 突变体的晶体结构(PDB 条目 5YNZ),该结构表明 huDHOase K1556A 突变体的活性位点含有一个金属离子。与单锌 PaDHPase 一样,氨甲酰化 Lys 的氧配体不需要用于 Znα 结合。考虑到 X 射线晶体结构和 MS 分析的综合数据,结晶状态和溶液中的单锌 PaDHPase 均未氨甲酰化。此外,结构证据表明,翻译后氨甲酰化的赖氨酸对于 PaDHPase 和 huDHOase 中的 Znα 结合不是必需的。

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