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参与肽基核苷抗生素多氧霉素肽基部分生物合成的天蓝色链霉菌Tü901共转录基因的分子特征分析

Molecular characterization of co-transcribed genes from Streptomyces tendae Tü901 involved in the biosynthesis of the peptidyl moiety of the peptidyl nucleoside antibiotic nikkomycin.

作者信息

Bruntner C, Lauer B, Schwarz W, Möhrle V, Bormann C

机构信息

Mikrobiologie/Biotechnologie, Universität Tübingen, Germany.

出版信息

Mol Gen Genet. 1999 Aug;262(1):102-14. doi: 10.1007/pl00008637.

Abstract

Six genes (nikA, nikB, nikD, nikE, nikF, and nikG) from Streptomyces tendae Tü901 were identified by sequencing the region surrounding the nikC gene, which encodes L-lysine 2-aminotransferase, previously shown to catalyze the initial reaction in the biosynthesis of hydroxypyridylhomothreonine, the peptidyl moiety of the peptidyl nucleoside antibiotic nikkomycin. These genes, together with the nikC gene, span a DNA region of 7.87 kb and are transcribed as a polycistronic mRNA in a growth-phase dependent manner. The sequences of the deduced proteins NikA and NikB exhibit significant similarity to those of acetaldehyde dehydrogenases and 4-hydroxy-2-oxovalerate aldolases, respectively, which are involved in meta-cleavage degradation of aromatic hydrocarbons. The predicted NikD gene product shows sequence similarity to monomeric sarcosine oxidases, and the deduced NikE protein belongs to the superfamily of adenylate-forming enzymes. The nikF gene and the nikG gene encode a cytochrome P450 monooxygenase and a ferredoxin, respectively. Disruption of any of the genes nikA, nikB, nikD, nikE and nikF by insertion of a kanamycin resistance cassette abolished formation of the biologically active nikkomycins I, J, X, and Z. The nikA, nikB, nikD, and nikE mutants accumulated the nucleoside moieties nikkomycins Cx and Cz. In the nikD and nikE mutants nikkomycin production (nikkomycins I, J, X, Z) could be restored by feeding with picolinic acid and hydroxypyridylhomothreonine, respectively. The nikF mutant exclusively produced novel derivatives, nikkomycins Lx and Lz, which contain pyridylhomothreonine as the peptidyl moiety. Our results indicate that the nikA, nikB, nikD, nikE, nikF, and nikG genes, in addition to nikC, function in the biosynthetic pathway leading to hydroxypyridylhomothreonine, the putative activities of each of their products are discussed.

摘要

通过对nikC基因周围区域进行测序,鉴定出了来自天蓝色链霉菌Tü901的六个基因(nikA、nikB、nikD、nikE、nikF和nikG),nikC基因编码L-赖氨酸2-氨基转移酶,先前已证明该酶催化羟基吡啶基高丝氨酸生物合成的初始反应,羟基吡啶基高丝氨酸是肽基核苷抗生素多氧霉素的肽基部分。这些基因与nikC基因一起,跨越7.87 kb的DNA区域,并以生长阶段依赖的方式转录为多顺反子mRNA。推导的蛋白质NikA和NikB的序列分别与乙醛脱氢酶和4-羟基-2-氧代戊酸醛缩酶的序列具有显著相似性,它们参与芳烃的间位裂解降解。预测的NikD基因产物与单体肌氨酸氧化酶具有序列相似性,推导的NikE蛋白属于腺苷酸形成酶超家族。nikF基因和nikG基因分别编码一种细胞色素P450单加氧酶和一种铁氧化还原蛋白。通过插入卡那霉素抗性盒破坏nikA、nikB、nikD、nikE和nikF中的任何一个基因,都会消除生物活性多氧霉素I、J、X和Z的形成。nikA、nikB、nikD和nikE突变体积累了核苷部分多氧霉素Cx和Cz。在nikD和nikE突变体中,分别通过添加吡啶甲酸和羟基吡啶基高丝氨酸可以恢复多氧霉素的产生(多氧霉素I、J、X、Z)。nikF突变体仅产生新型衍生物多氧霉素Lx和Lz,它们含有吡啶基高丝氨酸作为肽基部分。我们的结果表明,除nikC外,nikA、nikB、nikD、nikE、nikF和nikG基因在导致羟基吡啶基高丝氨酸的生物合成途径中发挥作用,并讨论了它们各自产物的假定活性。

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