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天蓝色链霉菌Tü901的L-赖氨酸2-氨基转移酶催化多氧霉素D生物合成的初始反应。

The Streptomyces tendae Tü901 L-lysine 2-aminotransferase catalyzes the initial reaction in nikkomycin D biosynthesis.

作者信息

Bruntner C, Bormann C

机构信息

Mikrobiologie/Biotechnologie, Universität Tübingen, Germany.

出版信息

Eur J Biochem. 1998 Jun 1;254(2):347-55. doi: 10.1046/j.1432-1327.1998.2540347.x.

Abstract

Protein P8 was previously identified as a putative nikkomycin biosynthesis protein. The gene (nikC) encoding protein P8 was cloned from the Streptomyces tendae Tü901 nikkomycin gene cluster and sequenced. The nikC gene was inactivated by inserting a kanamycin resistance cassette; the mutant did not produce the biologically active nikkomycins I, J, X, and Z, but accumulated the nucleoside moieties nikkomycins C(X) and C(Z). The mutant was complemented to nikkomycin production (I, J, X, Z) by nikC expressed from the mel promoter of the vector pIJ702. Furthermore, the nikkomycin-negative phenotype was reversed by the addition of picolinic acid, a precursor of the peptidyl moiety of nikkomycins (nikkomycin D), into the culture medium. The nikC gene was expressed in Escherichia coli and identified and characterized at the enzyme level. NikC encodes an L-lysine 2-aminotransferase, and the activity was exclusively detected in nikkomycin producers and its presence correlated to nikkomycin production. The nikC-inactivated mutant grew with L-lysine as sole source of nitrogen and carbon, indicating that L-lysine 2-aminotransferase is not required for lysine catabolism. Our results identified the nikC-encoded L-lysine 2-aminotransferase as the nikkomycin biosynthetic enzyme that catalyzes the initial reaction in nikkomycin D biosynthesis. The NikC protein belongs to a novel family of pyridoxamine or pyridoxal-phosphate-dependent dehydrases and aminotransferases, some of which are involved in dideoxy- and deoxyaminosugar biosynthesis.

摘要

蛋白质P8先前被鉴定为一种假定的尼可霉素生物合成蛋白。从淡紫灰链霉菌Tü901的尼可霉素基因簇中克隆并测序了编码蛋白质P8的基因(nikC)。通过插入卡那霉素抗性盒使nikC基因失活;该突变体不产生具有生物活性的尼可霉素I、J、X和Z,但积累了核苷部分尼可霉素C(X)和C(Z)。通过载体pIJ702的mel启动子表达的nikC使该突变体恢复了尼可霉素的生产(I、J、X、Z)。此外,通过向培养基中添加吡啶甲酸(尼可霉素(尼可霉素D)肽基部分的前体),逆转了尼可霉素阴性表型。nikC基因在大肠杆菌中表达,并在酶水平上进行了鉴定和表征。NikC编码一种L-赖氨酸2-氨基转移酶,并且仅在尼可霉素生产者中检测到该活性,其存在与尼可霉素的生产相关。nikC失活的突变体以L-赖氨酸作为唯一的氮源和碳源生长,这表明赖氨酸分解代谢不需要L-赖氨酸2-氨基转移酶。我们的结果确定nikC编码的L-赖氨酸2-氨基转移酶是催化尼可霉素D生物合成初始反应的尼可霉素生物合成酶。NikC蛋白属于一个新的吡哆胺或磷酸吡哆醛依赖性脱水酶和氨基转移酶家族,其中一些参与双脱氧和脱氧氨基糖的生物合成。

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