首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Convergence of isoprene and polyketide biosynthetic machinery: Isoprenyl-S-carrier proteins in the pksX pathway of Bacillus subtilis
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Convergence of isoprene and polyketide biosynthetic machinery: Isoprenyl-S-carrier proteins in the pksX pathway of Bacillus subtilis

机译:异戊二烯和聚酮化合物生物合成机制的融合:枯草芽孢杆菌pksX途径中的异戊二烯-S-载体蛋白

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摘要

The pksX gene cluster from Bacillus subtilis is predicted to encode the biosynthesis of an as yet uncharacterized hybrid nonribosomal pepticle/polyketide secondary metabolite. We used a combination of biochemical and mass spectrometric techniques to assign functional roles to the proteins AcpK, PksC, PksL, PksF, PksG, PksH, and PksI, and we conclude that they act to incorporate an acetate-derived P-methyl branch on an acetoacetyl-S-carrier protein and ultimately generate a Delta(2)-isoprenyi-S-carrier protein. This work highlights the power of mass spectrometry to elucidate the functions of orphan biosynthetic enzymes, and it details a mechanism by which single-carbon ss-branches can be inserted into polyketide-like structures. This pathway represents a noncanonical route to the construction of prenyl units and serves as a prototype for the intersection of isoprenoid and polyketide biosynthetic manifolds in other natural product biosynthetic pathways.
机译:预计枯草芽孢杆菌的pksX基因簇可编码尚未鉴定的杂化非核糖体消化物/聚酮类次生代谢产物的生物合成。我们结合使用了生化和质谱技术,以将功能性角色分配给蛋白质AcpK,PksC,PksL,PksF,PksG,PksH和PksI,并且得出结论,它们起着将乙酸酯衍生的P-甲基分支结合的作用。乙酰乙酰S载体蛋白,并最终生成Delta(2)-异戊二烯S载体蛋白。这项工作强调了质谱分析阐明孤儿生物合成酶功能的力量,并详细介绍了将单碳ss支链插入聚酮化合物样结构的机制。该途径代表异戊二烯单元构建的非经典途径,并且是其他天然产物生物合成途径中类异戊二烯和聚酮化合物生物合成歧管相交的原型。

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