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Elucidation of Final Steps of the Marineosins Biosynthetic Pathway through Identification and Characterization of the Corresponding Gene Cluster

机译:通过鉴定和表征相应的基因簇,阐明海洋蛋白生物合成途径的最终步骤

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摘要

The marine Streptomyces sp. CNQ-617 produces two diastereomers, marineosins A and B. These are structurally related to alkyl prodiginines, but with a more complex cydization and an unusual spiroaminal skeleton. We report the identification of the mar biosynthetic gene cluster and demonstrate production of marineosins through heterol-ogous expression in a S. venezuelae host named JND2. The mar cluster shares the same gene organization and has high homology to the genes of the red cluster (which directs the biosynthesis of undecylprodiginine) but contains an additional gene, named mar A. Replacement of marA in the JND2 strain leads to the accumulation of premarineosin, which is identical to marineosin with the exception that the middle pyrrole (Ring B) has not been reduced. The final step of the marineosin pathway is thus a MarA catalyzed reduction of this ring. Replacement of marG (a homologue of redG that directs undecylprodiginine cydization to give streptorubin B) in the JND2 strain leads to the loss of all spiroaminal products and the accumulation of 23-hydroxyundecylprodiginine and a shunt product, 23-ketoundecylprodiginine. MarG thus catalyzes the penultimate step of the marineosin pathway catalyzing conversion of 23-hydroxyundecylprodiginine to premarineosin. The preceding steps of the biosynthetic marineosin pathway likely mirror that in the red-directed biosynthetic process, with the exception of the introduction of the hydroxyl functionality required for spiroaminal formation. This work presents the first experimentally supported scheme for biosynthesis of marineosin and provides a new biologically active molecule, premarineosin.
机译:海洋链霉菌CNQ-617产生两种非对映异构体,即Marineosins A和B。它们在结构上与烷基prodiginines有关,但具有更复杂的细胞化作用和不常见的螺旋体骨架。我们报告了mar生物合成基因簇的鉴定,并证明了通过在名为JND2的委内瑞拉葡萄球菌宿主中的异源表达来表达海洋蛋白。 mar簇具有相同的基因组织,并且与红色簇的基因(指导十一烷基谷丙素的生物合成)具有高度同源性,但包含一个名为mar A的附加基因。JND2菌株中marA的替代导致前海洋红蛋白的积累,除了未还原中间吡咯(B环)外,其余均与海洋蛋白相同。因此,海洋蛋白途径的最后一步是该环的MarA催化还原。在JND2株中替换marG(redG的同系物,其指导十一烷基谷氨酰胺酰化以产生链霉菌素B)在JND2菌株中的丧失导致所有螺旋体产物的损失以及23-羟基十一烷基谷氨酸和一种旁路产物23-酮基十二烷基谷氨酸的积累。因此,MarG催化了Marineosin途径的倒数第二个步骤,该步骤催化了23-羟基十一烷基Prodiginine向Premarineosin的转化。除了为螺旋体形成所需的羟基官能团引入之外,生物合成的海洛因途径的前述步骤可能反映了红色导向的生物合成过程。这项工作为海洋生物素的生物合成提供了第一个实验支持的方案,并提供了一种新的生物活性分子,前海洋素。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2014年第12期|4565-4574|共10页
  • 作者单位

    Department of Chemistry, Portland State University, Portland, Oregon, 97201-3203, United States;

    Department of Chemistry, Portland State University, Portland, Oregon, 97201-3203, United States;

    Department of Chemistry, Portland State University, Portland, Oregon, 97201-3203, United States;

    Department of Chemistry, Portland State University, Portland, Oregon, 97201-3203, United States;

    Department of Chemistry, Portland State University, Portland, Oregon, 97201-3203, United States;

    Department of Chemistry, Portland State University, Portland, Oregon, 97201-3203, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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