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由加利车霉素聚酮合酶CalE8合成八酮多烯:对烯二炔核心结构生物合成的启示

Production of octaketide polyenes by the calicheamicin polyketide synthase CalE8: implications for the biosynthesis of enediyne core structures.

作者信息

Belecki Katherine, Crawford Jason M, Townsend Craig A

机构信息

Department of Chemistry, The Johns Hopkins University, Baltimore, Maryland 21218, USA.

出版信息

J Am Chem Soc. 2009 Sep 9;131(35):12564-6. doi: 10.1021/ja904391r.

Abstract

Enediyne antibiotics are categorized according to the presence of either a 9- or 10-membered ring within their polyketide-derived core structures. Recent literature reports have favored the notion that biosynthetic divergence of the two structural families is determined by the enediyne polyketide synthases (PKSs) alone. We now disclose the simultaneous in vitro production of three octaketide polyenes by biosynthetic enzymes for the 10-membered enediyne calicheamicin gamma(1)(I), including the elusive beta-keto acid precursor to a previously described C15 methyl hexaenone. Alongside these two polyene products, we have additionally detected a hydrocarbon heptaene previously isolated only from 9-membered enediyne systems. The discovery of the heptaene in the calicheamicin system promotes a more convergent model for the early steps of enediyne biosynthesis. Furthermore, the synthesis of this set of octaketides by the enediyne PKS CalE8 and thioesterase CalE7 suggests, in contrast to recent biosynthetic proposals, that accessory enzymes may be necessary to initiate differentiation to 9- or 10-membered enediyne precursors, either by modulation of enediyne PKS activity or by interception and modification of polyketide chain-extension intermediates.

摘要

烯二炔类抗生素根据其聚酮衍生核心结构中9元或10元环的存在情况进行分类。最近的文献报道倾向于认为这两个结构家族的生物合成差异仅由烯二炔聚酮合酶(PKSs)决定。我们现在披露了由生物合成酶同时体外生产三种八酮多烯的情况,这些酶用于合成10元烯二炔加利车霉素γ(1)(I),包括一种难以捉摸的β-酮酸前体,它是之前描述的C15甲基己烯酮的前体。除了这两种多烯产物外,我们还检测到一种仅从9元烯二炔系统中分离出来的烃类庚烯。在加利车霉素系统中发现庚烯,为烯二炔生物合成的早期步骤提出了一个更趋同的模型。此外,与最近的生物合成提议相反,烯二炔PKS CalE8和硫酯酶CalE7合成这组八酮化合物表明,可能需要辅助酶来启动向9元或10元烯二炔前体的分化,要么通过调节烯二炔PKS活性,要么通过拦截和修饰聚酮链延伸中间体。

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