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从能够羟化 3-氰吡啶的睾酮红球菌 JA1 中克隆、表达和功能分析烟酰胺脱氢酶基因簇。

Cloning, expression and functional analysis of nicotinate dehydrogenase gene cluster from Comamonas testosteroni JA1 that can hydroxylate 3-cyanopyridine.

机构信息

Jiangsu Engineering and Technology Research Center for Industrialization of Microbial Resources, Jiangsu Key Laboratory for Biodiversity and Biotechnology, College of Life Science, Nanjing Normal University, 1Wenyuan Rd, Nanjing, 210046, People's Rebuplic of China.

出版信息

Biodegradation. 2010 Jul;21(4):593-602. doi: 10.1007/s10532-010-9327-2. Epub 2010 Feb 2.

Abstract

A nicotinate dehydrogenase (NaDH) gene cluster was cloned from Comamonas testosteroni JA1. The enzyme, termed NaDH(JA1), is composed of 21, 82, and 46 kDa subunits, respectivley containing [2Fe2S], Mo(V) and cytochrome c domains. The recombinant NaDH(JA1) can catalyze the hydroxylation of nicotinate and 3-cyanopyridine. NaDH(JA1) protein exhibits 52.8% identity to the amino acid sequence of NaDH(KT2440) from P. putida KT2440. Sequence alignment analysis showed that the [2Fe2S] domain in NaDH(JA1) had a type II [2Fe-2S] motif and a type I [2Fe-2S] motif, while the same domain in NaDH(KT2440) had only a type II [2Fe-2S] motif. NaDH(KT2440) had an additional hypoxanthine dehydrogenase motif that NaDH(JA1) does not have. When the small unit of NaDH(JA1) was replaced by the small subunit from NaDH(KT2440), the hybrid protein was able to catalyze the hydroxylation of nicotinate, but lost the ability to catalyze hydroxylation of 3-cyanopyridine. In contrast, after replacement of the small subunit of NaDH(KT2440) with the small subunit from NaDH(JA1), the resulting hybrid protein NaDH(JAS+KTL) acquired the ability to hydroxylate 3-cyanopyridine. The subunits swap results indicate the [2Fe2S] motif determines the 3-cyanopyridine hydroxylation ability, which is evidently different from the previous belief that the Mo motif determines substrate specificity.

摘要

从 Comamonas testosteroni JA1 中克隆出烟酰胺脱氢酶 (NaDH) 基因簇。该酶称为 NaDH (JA1),由 21、82 和 46 kDa 亚基组成,分别含有 [2Fe2S]、Mo(V) 和细胞色素 c 结构域。重组 NaDH (JA1) 可催化烟碱和 3-氰吡啶的羟化。NaDH (JA1) 蛋白与来自 P. putida KT2440 的 NaDH (KT2440) 的氨基酸序列具有 52.8%的同一性。序列比对分析表明,NaDH (JA1) 的 [2Fe2S] 结构域具有 II 型 [2Fe-2S] 基序和 I 型 [2Fe-2S] 基序,而 NaDH (KT2440) 中的相同结构域仅具有 II 型 [2Fe-2S] 基序。NaDH (KT2440) 具有 NaDH (JA1) 所没有的额外的黄嘌呤脱氢酶基序。当 NaDH (JA1) 的小亚基被 NaDH (KT2440) 的小亚基取代时,杂合蛋白能够催化烟碱的羟化,但失去了催化 3-氰吡啶羟化的能力。相反,当用 NaDH (JA1) 的小亚基取代 NaDH (KT2440) 的小亚基时,得到的杂合蛋白 NaDH (JAS+KTL) 获得了催化 3-氰吡啶羟化的能力。亚基交换结果表明,[2Fe2S] 基序决定了 3-氰吡啶的羟化能力,这显然与先前认为 Mo 基序决定底物特异性的观点不同。

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