首页> 外文期刊>Antonie van Leeuwenhoek: Journal of Microbiology and serology >Heterologous expression of the naphthocyclinone hydroxylase gene from Streptomyces arenae for production of novel hybrid polyketides.
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Heterologous expression of the naphthocyclinone hydroxylase gene from Streptomyces arenae for production of novel hybrid polyketides.

机译:链霉菌萘环萘酮羟化酶基因的异源表达,用于生产新型杂化聚酮化合物。

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摘要

Streptomyces arenae produces at least four different isochromanequinone antibiotics, the naphthocyclinones, of which the beta- and gamma-form are active against Gram-positive bacteria. The naphthocyclinone biosynthesis gene cluster was isolated from Streptomyces arenae DSM 40737 and by sequence analysis the minimal polyketide synthase genes and several genes encoding tailoring enzymes were identified. Southern blot analysis of the naphthocyclinone gene cluster indicated that a 3.5 kb BamHI fragment located approximately 9 kb downstream of the minimal PKS genes hybridizes to the schC hydroxylase DNA probe isolated from S. halstedii. Two complete and one incomplete open reading frames were identified on this fragment. Sequence analysis revealed strong homology to the genes of the actVA region of S. coelicolor, to several (suggested) hydroxylases and a putative FMN-dependent monooxygenase. The proposed hydroxylase, encoded by ncnH, could hydroxylate aloesaponarin II, a molecule that is produced by the actinorhodin minimal polyketide synthase in combination with the actinorhodin ketoreductase, aromatase and cyclase. Furthermore, this enzyme is capable of accepting additional polyketide core structures that contain a 5-hydroxy-1,4-naphthoquinone moiety as substrates which makes it an interesting tailoring enzyme for the modification of polyketide structures.
机译:链霉菌产生至少四种不同的异苯并二氢萘醌抗生素,萘环素,其中的β和γ形式对革兰氏阳性细菌具有活性。从竞技链霉菌DSM 40737中分离出萘环素生物合成基因簇,并通过序列分析确定了最小的聚酮化合物合酶基因和几种编码剪裁酶的基因。对萘环蛋白酮基因簇的Southern印迹分析表明,位于最小PKS基因下游约9kb处的3.5kb BamHI片段与从哈氏链球菌分离的schC羟化酶DNA探针杂交。在该片段上鉴定出两个完整和一个不完整的开放阅读框。序列分析显示与天蓝色链霉菌actVA区的基因,几种(建议的)羟化酶和一种假定的FMN依赖的单加氧酶具有高度的同源性。拟议的由ncnH编码的羟化酶可以羟化芦荟皂苷II,这是一种由放线菌丝素最小聚酮化合物合酶与放线菌丝素酮还原酶,芳香化酶和环化酶结合产生的分子。此外,该酶能够接受含有5-羟基-1,4-萘醌部分的其他聚酮核心结构作为底物,这使其成为用于修饰聚酮结构的有趣的定制酶。

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