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产色链霉菌中参与尼可霉素生物合成过程中吡啶基残基羟基化的sanH和sanI的鉴定与表征

Identification and characterization of sanH and sanI involved in the hydroxylation of pyridyl residue during nikkomycin biosynthesis in Streptomyces ansochromogenes.

作者信息

Xie Zhoujie, Niu Guoqing, Li Rui, Liu Gang, Tan Huarong

机构信息

State Key Laboratory of Microbial Resources, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.

出版信息

Curr Microbiol. 2007 Dec;55(6):537-42. doi: 10.1007/s00284-007-9028-1. Epub 2007 Sep 26.

Abstract

Nikkomycins are highly potent inhibitors of chitin synthase. The nikkomycin biosynthetic gene cluster has been cloned from Streptomyces asochromogenes. Two cytochrome P450 monooxygenase genes (sanQ, sanH) and one ferredoxin gene (sanI) were found in the cluster. It was reported that SanQ is involved in the hydroxylation of L-His, a key step in 4-formyl-4-imidazolin-2-one base biosynthesis. Here, we have studied the function of sanH and sanI. Disruption of sanH abolished the production of nikkomycin X and Z, but it accumulated one dominant component nikkomycin Lx, which is the nikkomycin X analog lacking the hydroxy group at the pyridyl residue. The sanI disruption mutant accumulated predominantly nikkomycin Lx in addition to nikkomycin X and Z. The nikkomycin production profile of the sanH and sanI double disruption mutant was the same as that of the sanH disruption mutant. These results confirmed that SanH is essential for the hydroxylation of pyridyl residue in nikkomycin biosynthesis of S. ansochromogenes and first demonstrated that SanI is an effective electron donor for SanH, but not for SanQ in vivo.

摘要

多氧霉素是几丁质合成酶的高效抑制剂。多氧霉素生物合成基因簇已从产色链霉菌中克隆出来。在该基因簇中发现了两个细胞色素P450单加氧酶基因(sanQ、sanH)和一个铁氧化还原蛋白基因(sanI)。据报道,SanQ参与L-组氨酸的羟基化反应,这是4-甲酰基-4-咪唑啉-2-酮碱基生物合成中的关键步骤。在此,我们研究了sanH和sanI的功能。sanH基因的破坏消除了多氧霉素X和Z的产生,但积累了一种主要成分多氧霉素Lx,它是多氧霉素X的类似物,在吡啶基残基处缺少羟基。sanI基因破坏突变体除了积累多氧霉素X和Z外,还主要积累多氧霉素Lx。sanH和sanI双破坏突变体的多氧霉素产生谱与sanH破坏突变体相同。这些结果证实,SanH对于产色链霉菌多氧霉素生物合成中吡啶基残基的羟基化是必不可少的,并且首次证明SanI在体内是SanH的有效电子供体,但不是SanQ的有效电子供体。

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