Jung Du-Kyo, Lee Youra, Park Sung Goo, Park Byoung Chul, Kim Ghyung-Hwa, Rhee Sangkee
School of Agricultural Biotechnology and Center for Agricultural Biomaterials, Seoul National University, Seoul 151-921, Korea.
Proc Natl Acad Sci U S A. 2006 Jun 27;103(26):9790-5. doi: 10.1073/pnas.0600523103. Epub 2006 Jun 16.
The ureide pathway, which produces ureides from uric acid, is an essential purine catabolic process for storing and transporting the nitrogen fixed in leguminous plants and some bacteria. PucM from Bacillus subtilis was recently characterized and found to catalyze the second reaction of the pathway, hydrolyzing 5-hydroxyisourate (HIU), a product of uricase in the first step. PucM has 121 amino acid residues and shows high sequence similarity to the functionally unrelated protein transthyretin (TTR), a thyroid hormone-binding protein. Therefore, PucM belongs to the TTR-related proteins (TRP) family. The crystal structures of PucM at 2.0 A and its complexes with the substrate analogs 8-azaxanthine and 5,6-diaminouracil reveal that even with their overall structure similarity, homotetrameric PucM and TTR are completely different, both in their electrostatic potential and in the size of the active sites located at the dimeric interface. Nevertheless, the absolutely conserved residues across the TRP family, including His-14, Arg-49, His-105, and the C-terminal Tyr-118-Arg-119-Gly-120-Ser-121, indeed form the active site of PucM. Based on the results of site-directed mutagenesis of these residues, we propose a possible mechanism for HIU hydrolysis. The PucM structure determined for the TRP family leads to the conclusion that diverse members of the TRP family would function similarly to PucM as HIU hydrolase.
从尿酸产生脲化物的脲化物途径,是豆科植物和一些细菌中储存和运输固定氮的重要嘌呤分解代谢过程。最近对枯草芽孢杆菌的PucM进行了表征,发现它催化该途径的第二步反应,水解第一步中尿酸酶的产物5-羟基异尿酸(HIU)。PucM有121个氨基酸残基,与功能不相关的甲状腺激素结合蛋白转甲状腺素蛋白(TTR)具有高度的序列相似性。因此,PucM属于转甲状腺素蛋白相关蛋白(TRP)家族。PucM在2.0 Å分辨率下的晶体结构及其与底物类似物8-氮杂黄嘌呤和5,6-二氨基尿嘧啶的复合物表明,即使它们的整体结构相似,同四聚体的PucM和TTR在静电势和位于二聚体界面的活性位点大小方面也完全不同。然而,TRP家族中绝对保守的残基,包括His-14、Arg-49、His-105以及C末端的Tyr-118-Arg-119-Gly-120-Ser-121,确实构成了PucM的活性位点。基于对这些残基的定点诱变结果,我们提出了一种HIU水解的可能机制。为TRP家族确定的PucM结构得出的结论是,TRP家族的不同成员作为HIU水解酶的功能可能与PucM相似。