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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Molecular cloning and identification of the laspartomycin biosynthetic gene cluster from Streptomyces viridochromogenes.
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Molecular cloning and identification of the laspartomycin biosynthetic gene cluster from Streptomyces viridochromogenes.

机译:链霉菌生色链球菌拉丝霉素生物合成基因簇的分子克隆和鉴定。

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摘要

The biosynthetic gene cluster for laspartomycins, a family of 11 amino acid peptide antibiotics, has been cloned and sequenced from Streptomyces viridochromogenes ATCC 29814. Annotation of a segment of 88912bp of S. viridochromogenes genomic sequence revealed the putative lpm cluster and its flanking regions which harbor 43 open reading frames. The lpm cluster, which spans approximately 60kb, consists of 21 open reading frames. Those include four NRPS genes (lpmA/orf18, lpmB/orf25, lpmC/orf26 and lpmD/orf27), four genes (orfs 21, 22, 24 and 29) involved in the lipid tail biosynthesis and attachment, four regulatory genes (orfs 13, 19, 32 and 33) and three putative exporters or self-resistance genes (orfs 14, 20 and 30). In addition, the gene involved in the biosynthesis of the nonproteinogenic amino acid Pip was also identified in the lpm cluster while the genes necessary for the biosynthesis of the rare residue diaminopropionic acid (Dap) were found to reside elsewhere on the chromosome. Interestingly, the dabA, dabB and dabC genes predicted to code for the biosynthesis of the unusual amino acid diaminobutyric acid (Dab) are organized into the lpm cluster even though the Dab residue was not found in the laspartomycins. Disruption of the NRPS lpmC gene completely abolished laspartomycin production in the corresponding mutant strain. These findings will allow molecular engineering and combinatorial biosynthesis approaches to expand the structural diversity of the amphomycin-group peptide antibiotics including the laspartomycins and friulimicins.
机译:Laspartomycins的生物合成基因簇是一种11种氨基酸肽抗生素家族,已从链霉菌变色链球菌ATCC 29814中克隆并测序。注释88912bp的S. viridochromogenes基因组序列片段揭示了推定的lpm簇及其侧翼区域。 43个开放阅读框。 lpm簇大约占60kb,由21个开放阅读框组成。这些包括四个NRPS基因(lpmA / orf18,lpmB / orf25,lpmC / orf26和lpmD / orf27),参与脂质尾部生物合成和附着的四个基因(orfs 21、22、24和29),四个调节基因(orfs 13) ,19、32和33)和三个推定的输出蛋白或自我抗性基因(orfs 14、20和30)。另外,在lpm簇中还鉴定了与非蛋白原性氨基酸Pip的生物合成有关的基因,而发现稀有残基二氨基丙酸(Dap)的生物合成所需的基因位于染色体的其他地方。有趣的是,即使在Laspartomycins中未发现Dab残基,被预测为异常氨基酸二氨基丁酸(Dab)的生物合成编码的dabA,dabB和dabC基因也被组织到了lpm簇中。 NRPS lpmC基因的破坏完全消除了相应突变菌株中的拉丝霉素生产。这些发现将使分子工程和组合生物合成方法能够扩大包括拉丝霉素和氟利米星的两性霉素基肽抗生素的结构多样性。

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