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芳香粘细菌电子传递抑制剂柱孢霉素的生物合成由一种新型模块化聚酮合酶指导。

The biosynthesis of the aromatic myxobacterial electron transport inhibitor stigmatellin is directed by a novel type of modular polyketide synthase.

作者信息

Gaitatzis Nikolaos, Silakowski Barbara, Kunze Brigitte, Nordsiek Gabriele, Blöcker Helmut, Höfle Gerhard, Müller Rolf

机构信息

GBF-German Research Centre for Biotechnology, Mascheroder Weg 1, 38124 Braunschweig, Germany.

出版信息

J Biol Chem. 2002 Apr 12;277(15):13082-90. doi: 10.1074/jbc.M111738200. Epub 2002 Jan 23.

DOI:10.1074/jbc.M111738200
PMID:11809757
Abstract

Deductions from the molecular analysis of the 65,000-bp stigmatellin biosynthetic gene cluster are reported. The biosynthetic genes (stiA-J) encode an unusual bacterial modular type I polyketide synthase (PKS) responsible for the formation of this aromatic electron transport inhibitor produced by the myxobacterium Stigmatella aurantiaca. Involvement of the PKS gene cluster in stigmatellin biosynthesis is shown using site-directed mutagenesis. One module of the PKS is assumed to be used iteratively during the biosynthetic process, which seems to involve an unusual transacylation of the biosynthetic intermediate from an acyl carrier protein domain back to the preceding ketosynthase domain. Finally, the polyketide chain which is presumably catalyzed by a novel C-terminal domain in StiJ that does not resemble thioesterases, is cyclized and aromatized. The presented results of feeding experiments are in good agreement with the proposed biosynthetic scheme. In contrast to all other PKS type I systems reported to date, each module of StiA-J is encoded on a separate gene. The gene cluster contains a "stand alone" O-methyltransferase and two unusual O-methyltransferase domains embedded in the PKS. In addition, inactivation of a cytochrome P450 monooxygenase-encoding gene involved in post-PKS hydroxylation of the aromatic ring leads to the formation of two novel stigmatellin derivatives.

摘要

报道了对65000 bp抗霉素生物合成基因簇的分子分析结果。生物合成基因(stiA-J)编码一种不同寻常的细菌模块化I型聚酮合酶(PKS),该酶负责由粘细菌橙色标桩菌产生的这种芳香族电子传递抑制剂的形成。使用定点诱变显示了PKS基因簇参与抗霉素的生物合成。假定PKS的一个模块在生物合成过程中被反复使用,这似乎涉及生物合成中间体从酰基载体蛋白结构域到前一个酮合成酶结构域的一种不同寻常的转酰基作用。最后,可能由StiJ中一个与硫酯酶不同的新型C末端结构域催化的聚酮链发生环化和芳构化。所呈现的饲喂实验结果与所提出的生物合成方案高度一致。与迄今为止报道的所有其他I型PKS系统不同,StiA-J的每个模块都由一个单独的基因编码。该基因簇包含一个“独立”的O-甲基转移酶和两个嵌入PKS中的不同寻常的O-甲基转移酶结构域。此外,一个参与芳香环PKS后羟基化的细胞色素P450单加氧酶编码基因的失活导致形成两种新型抗霉素衍生物。

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