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诺卡菌素A产生菌均匀诺卡氏菌中nocK和nocL的突变分析。

Mutational analysis of nocK and nocL in the nocardicin a producer Nocardia uniformis.

作者信息

Kelly Wendy L, Townsend Craig A

机构信息

Department of Chemistry, The Johns Hopkins University, 3400 N. Charles St., Baltimore, MD 21218, USA.

出版信息

J Bacteriol. 2005 Jan;187(2):739-46. doi: 10.1128/JB.187.2.739-746.2005.

Abstract

The nocardicins are a family of monocyclic beta-lactam antibiotics produced by the actinomycete Nocardia uniformis subsp. tsuyamanensis ATCC 21806. The most potent of this series is nocardicin A, containing a syn-configured oxime moiety, an uncommon feature in natural products. The nocardicin A biosynthetic gene cluster was recently identified and found to encode proteins in keeping with nocardicin A production, including the nocardicin N-oxygenase, NocL, in addition to genes of undetermined function, such as nocK, which bears similarities to a broad family of esterases. The latter was hypothesized to be involved in the formation of the critical beta-lactam ring. While previously shown to effect oxidation of the 2'-amine of nocardicin C to provide nocardicin A, it was uncertain whether NocL was the only N-oxidizing enzyme required for nocardicin A biosynthesis. To further detail the role of NocL in nocardicin production in N. uniformis, and to examine the function of nocK, a method for the transformation of N. uniformis protoplasts to inactivate both nocK and nocL was developed and applied. A reliable protocol is reported to achieve both insertional disruption and in trans complementation in this strain. While the nocK mutant still produced nocardicin A at levels near that seen for wild-type N. uniformis, and therefore has no obvious role in nocardicin biosynthesis, the nocL disruptant failed to generate the oxime-containing metabolite. Nocardicin A production was restored in the nocL mutant upon in trans expression of the gene. Furthermore, the nocL mutant accumulated the biosynthetic intermediate nocardicin C, confirming its role as the sole oxime-forming enzyme required for production of nocardicin A.

摘要

诺卡菌素是由放线菌均匀诺卡氏菌津山亚种ATCC 21806产生的一类单环β-内酰胺抗生素。该系列中活性最强的是诺卡菌素A,它含有一个顺式构型的肟基部分,这在天然产物中是一个不常见的特征。最近鉴定出了诺卡菌素A生物合成基因簇,发现其编码的蛋白质与诺卡菌素A的产生相符,包括诺卡菌素N-加氧酶NocL,此外还有功能未明的基因,如nocK,它与一大类酯酶有相似性。后者被推测参与关键β-内酰胺环的形成。虽然之前已证明NocL能使诺卡菌素C的2'-胺氧化生成诺卡菌素A,但不确定NocL是否是诺卡菌素A生物合成所需的唯一N-氧化酶。为了进一步详细了解NocL在均匀诺卡氏菌诺卡菌素产生中的作用,并研究nocK的功能,开发并应用了一种使均匀诺卡氏菌原生质体失活nocK和NocL的转化方法。报道了一种在该菌株中实现插入破坏和反式互补的可靠方案。虽然nocK突变体仍能产生诺卡菌素A,其水平与野生型均匀诺卡氏菌相近,因此在诺卡菌素生物合成中没有明显作用,但nocL破坏株未能产生含肟的代谢产物。在反式表达该基因后,nocL突变体中诺卡菌素A的产生得以恢复。此外,nocL突变体积聚了生物合成中间体诺卡菌素C,证实了它是产生诺卡菌素A所需的唯一肟形成酶。

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