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Biosynthesis of Aliphatic Polyketides by Type III Polyketide Synthase and Methyltransferase in Bacillus subtilis

机译:III型聚酮合酶和甲基转移酶在枯草芽孢杆菌中生物合成脂肪族聚酮。

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Type III polyketide synthases (PKSs) synthesize a variety of aromatic polyketides in plants, fungi, and bacteria. The bacterial genome projects predicted that probable type III PKS genes are distributed in a wide variety of gram-positive and -negative bacteria. The gram-positive model microorganism Bacillus subtilis contained the bcsA-ypbQ operon, which appeared to encode a type III PKS and a methyltransferase, respectively. Here, we report the characterization of bcsA (renamed bpsA, for Bacillus pyrone synthase, on the basis of its function) and ypbQ, which are involved in the biosynthesis of aliphatic polyketides. In vivo analysis demonstrated that BpsA was a type III PKS catalyzing the synthesis of triketide pyrones from long-chain fatty acyl-coenzyme A (CoA) thioesters as starter substrates and malonyl-CoA as an extender substrate, and YpbQ was a methyltransferase acting on the triketide pyrones to yield alkylpyrone methyl ethers. YpbQ thus was named BpsB because of its functional relatedness to BpsA. In vitro analysis with histidine-tagged BpsA revealed that it used broad starter substrates and produced not only triketide pyrones but also tetraketide pyrones and alkylresorcinols. Although the aliphatic polyketides were expected to localize in the membrane and play some role in modulating the rigidity and properties of the membrane, no detectable phenotypic changes were observed for a B. subtilis mutant containing a whole deletion of the bpsA-bpsB operon.
机译:III型聚酮化合物合酶(PKS)在植物,真菌和细菌中合成了多种芳香族聚酮化合物。细菌基因组计划预测,可能的III型PKS基因分布在多种革兰氏阳性和阴性细菌中。革兰氏阳性模型微生物枯草芽孢杆菌含有 bcsA - ypbQ 操纵子,其似乎分别编码III型PKS和甲基转移酶。在这里,我们报告 bcsA (根据其功能将芽孢杆菌吡喃酮合酶重命名为 bpsA )和 ypbQ的表征,它们参与脂肪族聚酮化合物的生物合成。体内分析表明BpsA是一种III型PKS,它催化长链脂肪酰基辅酶A(CoA)硫酯作为起始底物,丙二酰CoA作为增量剂底物合成三酮化合物吡喃酮,而YpbQ是一种作用于该酶的甲基转移酶。用三酮化合物吡喃酮生成烷基吡喃酮甲基醚。 YpbQ因其与BpsA的功能相关性而被称为BpsB。用组氨酸标记的BpsA进行的体外分析表明,它使用了广泛的起始物底物,不仅产生了三酮化合物的吡喃酮,还产生了四酮化合物的吡喃酮和烷基间苯二酚。尽管预期脂族聚酮化合物位于膜中并在调节膜的刚性和性质中起一定作用,但是对于 B,未观察到可检测的表型变化。枯草杆菌突变体,其中包含 bpsA-bpsB 操纵子的完整缺失。

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