首页> 外文期刊>Journal of the American Chemical Society >Uncovering the Formation and Selection of Benzylmalonyl-CoA from the Biosynthesis of Splenocin and Enterocin Reveals a Versatile Way to Introduce Amino Acids into Polyketide Carbon Scaffolds
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Uncovering the Formation and Selection of Benzylmalonyl-CoA from the Biosynthesis of Splenocin and Enterocin Reveals a Versatile Way to Introduce Amino Acids into Polyketide Carbon Scaffolds

机译:从脾脏和肠球菌素的生物合成中发现苄基丙二酰辅酶A的形成和选择揭示了一种将氨基酸引入聚酮化合物碳支架的多功能方法。

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摘要

Selective modification of carbon scaffolds via bio-synthetic engineering is important for polyketide structural diversification. Yet, this scope is currently restricted to simple aliphatic groups due to (1) limited variety of CoA-linked extender units, which lack aromatic structures and chemical reactivity, and (2) narrow acyltransferase (AT) specificity, which is limited to aliphatic CoA-linked extender units. In this report, we uncovered and characterized the first aromatic CoA-linked extender unit benzylma-lonyl-CoA from the biosynthetic pathways of splenocin and enterocin in Streptomyces sp. CNQ431. Its synthesis employs a deamination/ reductive carboxylation strategy to convert phenylalanine into benzylmalonyl-CoA, providing a link between amino acid and CoA-linked extender unit synthesis. By characterization of its selection, we further validated that AT domains of splenocin, and antimycin polyketide synthases are able to select this extender unit to introduce the phenyl group into their dilactone scaffolds. The biosynthetic machinery involved in the formation of this extender unit is highly versatile and can be potentially tailored for tyrosine, histidine and aspartic acid. The disclosed aromatic extender unit, amino acid-oriented synthetic pathway, and aromatic-selective AT domains provides a systematic breakthrough toward current knowledge of polyketide extender unit formation and selection, and also opens a route for further engineering of polyketide carbon scaffolds using amino acids.
机译:通过生物合成工程对碳支架的选择性修饰对于聚酮化合物的结构多样化很重要。但是,由于(1)CoA连接的增量剂单元种类有限,缺乏芳香族结构和化学反应性,以及(2)酰基转移酶(AT)特异性窄,仅限于脂肪族CoA,因此该范围目前仅限于简单的脂肪族基团。链接的扩展单元。在此报告中,我们从链霉菌属splenocin和肠球菌素的生物合成途径中发现并表征了第一个芳香族CoA连接的扩展单元苄基-lonyl-CoA。 CNQ431。它的合成采用脱氨/还原羧化策略,将苯丙氨酸转化为苄基丙二酰-辅酶A,从而在氨基酸和辅酶A连接的延伸单元合成之间提供了联系。通过表征其选择,我们进一步验证了脾脏球蛋白的AT结构域和抗霉素聚酮化合物合酶能够选择该扩展单元,以将苯基引入其双内酯支架中。形成该增量剂单元的生物合成机制具有很高的通用性,可以针对酪氨酸,组氨酸和天冬氨酸进行量身定制。所公开的芳族增量剂单元,氨基酸定向的合成途径和芳族选择性AT结构域提供了对聚酮化合物增量剂单元形成和选择的当前知识的系统性突破,并且也为使用氨基酸进一步工程化聚酮化合物碳支架开辟了道路。

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  • 来源
    《Journal of the American Chemical Society》 |2015年第12期|4183-4190|共8页
  • 作者单位

    Key Laboratory of Combinatorial Biosynthesis and Drug Discovery (Wuhan University), Ministry of Education, Wuhan University School of Pharmaceutical Sciences, 185 Donghu Road, Wuhan 430071, China;

    Key Laboratory of Combinatorial Biosynthesis and Drug Discovery (Wuhan University), Ministry of Education, Wuhan University School of Pharmaceutical Sciences, 185 Donghu Road, Wuhan 430071, China;

    State Key Laboratory of Bioorganic and Natural Products Chemistry, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, 345 Lingling Road, Shanghai 200032, China;

    Key Laboratory of Combinatorial Biosynthesis and Drug Discovery (Wuhan University), Ministry of Education, Wuhan University School of Pharmaceutical Sciences, 185 Donghu Road, Wuhan 430071, China;

    Key Laboratory of Combinatorial Biosynthesis and Drug Discovery (Wuhan University), Ministry of Education, Wuhan University School of Pharmaceutical Sciences, 185 Donghu Road, Wuhan 430071, China;

    Key Laboratory of Combinatorial Biosynthesis and Drug Discovery (Wuhan University), Ministry of Education, Wuhan University School of Pharmaceutical Sciences, 185 Donghu Road, Wuhan 430071, China;

    Key Laboratory of Combinatorial Biosynthesis and Drug Discovery (Wuhan University), Ministry of Education, Wuhan University School of Pharmaceutical Sciences, 185 Donghu Road, Wuhan 430071, China;

    State Key Laboratory of Bioorganic and Natural Products Chemistry, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, 345 Lingling Road, Shanghai 200032, China;

    Key Laboratory of Combinatorial Biosynthesis and Drug Discovery (Wuhan University), Ministry of Education, Wuhan University School of Pharmaceutical Sciences, 185 Donghu Road, Wuhan 430071, China;

  • 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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  • 入库时间 2022-08-18 03:09:34

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