Liu Xiwen, Zeng Jianhua, Chen Xiaolei, Xie Wei
State Key Laboratory for Biocontrol, School of Life Sciences, The Sun Yat-Sen University, 135 W. Xingang Rd., Guangzhou, Guangdong 510275, People's Republic of China.
Center for Cellular &Structural biology, The Sun Yat-Sen University, 132 E. Circle Rd., University City, Guangzhou, Guangdong 510006, People's Republic of China.
Sci Rep. 2016 Jul 26;6:30494. doi: 10.1038/srep30494.
The YjgF/YER057c/UK114 family proteins are highly conserved across all three domains of life, and most of them currently have no clearly defined biological roles. In vitro, these proteins were found to hydrolyze the enamine/imine intermediates generated from serine or threonine, and were renamed Reactive Intermediate Deaminase A (RidA). RidA was recently discovered in Arabidopsis thaliana, and by deaminating the toxic enamine/imine intermediates, it prevents the inactivation of many functionally important pyridoxal 5'-phosphate (PLP)-containing enzymes in plants such as branched-chain aminotransferase BCAT (IlvE). In this study, we determined the crystal structure of Arabidopsis thaliana RidA in the apo form, as well as RidA complexed with the ligand pyruvate. RidA forms the trimeric, barrel-like quaternary structure and inter-subunit cavities, and resembles most RidA family members. Each pyruvate molecule binds to the interface between two subunits, and the recognition of pyruvate is achieved by the interactions with R165 and T167. From sequence alignment and structural superposition, we identified a series of key residues responsible for the trimer assembly, whose importance was confirmed by enzymatic assays. This study provides structural insight into RidA functions in plants.
YjgF/YER057c/UK114家族蛋白在生命的三个结构域中高度保守,目前大多数成员的生物学功能尚不明确。在体外实验中,这些蛋白能够水解由丝氨酸或苏氨酸生成的烯胺/亚胺中间体,并被重新命名为反应性中间体脱氨酶A(RidA)。最近在拟南芥中发现了RidA,它通过脱除有毒的烯胺/亚胺中间体,防止植物中许多功能重要的含磷酸吡哆醛(PLP)的酶失活,如支链氨基转移酶BCAT(IlvE)。在本研究中,我们测定了拟南芥RidA的无配体形式以及与配体丙酮酸结合的复合物的晶体结构。RidA形成三聚体桶状四级结构和亚基间腔,与大多数RidA家族成员相似。每个丙酮酸分子结合在两个亚基之间的界面上,通过与R165和T167的相互作用实现对丙酮酸的识别。通过序列比对和结构叠加,我们确定了一系列负责三聚体组装的关键残基,酶活性测定证实了它们的重要性。本研究为RidA在植物中的功能提供了结构上的见解。