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Structural Basis for Recognition of L-lysine L-ornithine and L-24-diamino Butyric Acid by Lysine Cyclodeaminase

机译:赖氨酸环脱氨酶识别L-赖氨酸L-鸟氨酸和L-24-二氨基丁酸的结构基础

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摘要

L-pipecolic acid is a non-protein amino acid commonly found in plants, animals, and microorganisms. It is a well-known precursor to numerous microbial secondary metabolites and pharmaceuticals, including anticancer agents, immunosuppressants, and several antibiotics. Lysine cyclodeaminase (LCD) catalyzes β-deamination of L-lysine into L-pipecolic acid using β-nicotinamide adenine dinucleotide as a cofactor. Expression of a human homolog of LCD, μ-crystallin, is elevated in prostate cancer patients. To understand the structural features and catalytic mechanisms of LCD, we determined the crystal structures of Streptomyces pristinaespiralis LCD (SpLCD) in (i) a binary complex with NAD+, (ii) a ternary complex with NAD+ and L-pipecolic acid, (iii) a ternary complex with NAD+ and L-proline, and (iv) a ternary complex with NAD+ and L-2,4-diamino butyric acid. The overall structure of SpLCD was similar to that of ornithine cyclodeaminase from Pseudomonas putida. In addition, SpLCD recognized L-lysine, L-ornithine, and L-2,4-diamino butyric acid despite differences in the active site, including differences in hydrogen bonding by Asp236, which corresponds with Asp228 from Pseudomonas putida ornithine cyclodeaminase. The substrate binding pocket of SpLCD allowed substrates smaller than lysine to bind, thus enabling binding to ornithine and L-2,4-diamino butyric acid. Our structural and biochemical data facilitate a detailed understanding of substrate and product recognition, thus providing evidence for a reaction mechanism for SpLCD. The proposed mechanism is unusual in that NAD+ is initially converted into NADH and then reverted back into NAD+ at a late stage of the reaction.
机译:L-哌酸是一种常见于植物,动物和微生物中的非蛋白质氨基酸。它是许多微生物次生代谢产物和药物(包括抗癌药,免疫抑制剂和几种抗生素)的众所周知的前体。赖氨酸环脱氨酶(LCD)使用β-烟酰胺腺嘌呤二核苷酸作为辅因子将L-赖氨酸的β-脱氨反应催化成L-哌酸。 LCD的人类同源物μ-crystallin的表达在前列腺癌患者中升高。为了了解LCD的结构特征和催化机理,我们确定了(i)具有NAD + 的二元复合物,(ii)具有NAD < sup> + 和L-哌酸,(iii)具有NAD + 和L-脯氨酸的三元复合物,以及(iv)具有NAD + + 最初会转化为NADH,然后在反应后期还原回NAD +

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