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Expanding the Isoprenoid Building Block Repertoire with an IPP Methyltransferase from Streptomyces monomycini

机译:用来自Streptomyces Monomycini的IPP甲基转移酶扩展等异单元构建块曲目

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Many synthetic biology approaches aim at expanding the product diversity of enzymes or whole biosynthetic pathways. However, the chemical structure space of natural product forming routes is often restricted by the limited cellular availability of different starting intermediates. Although the terpene biosynthesis pathways are highly modular, their starting intermediates are almost exclusively the C-5 units IPP and DMAPP. To amplify the possibilities of terpene biosynthesis through the modification of its building blocks, we identified and characterized a SAM-dependent methyltransferase converting IPP into a variety of C-6 and C-7 prenyl pyrophosphates. Heterologous expression in Escherichia tali not only extended the intracellular prenyl pyrophosphate spectrum with mono- or dimethylated IPP and DMAPP, but also enabled the biosynthesis of C-11, C-12,C- C-16, and C-17 prenyl pyrophosphates. We furthermore demonstrated the general high promiscuity of terpenoid biosynthesis pathways toward uncommon building blocks by the E. tali-based production of polymethylated C-41, C-42, and C-43 carotenoids. Integration of the IPP methyltransferase in terpene synthesis pathways enables an expansion of the terpenoid structure space beyond the borders predetermined by the isoprene rule which indicates a restricted synthesis by condensation of C-5 units.
机译:许多合成生物学方法旨在扩大酶或整个生物合成途径的产物多样性。然而,天然产物形成途径的化学结构空间通常受到不同起始中间体的有限细胞可用性的限制。虽然萜烯生物合成途径高度模块化,但它们的起始中间体几乎完全是C-5单元IPP和DMAPP。通过修改其结构块来扩增萜烯生物合成的可能性,我们鉴定并表征了将IPP转化为各种C-6和C-7戊烯酰磷酸的SAM依赖性甲基转移酶。 Escherichia Tali中的异源表达不仅将细胞内戊酰磷酸盐光谱与单甲基化的IPP和DMAPP延伸,而且还使C-11,C-12,C-C-16和C-17戊烯型焦磷酸的生物合成。我们还证明了通过大甲基化的C-41,C-42和C-43类胡萝卜素的E.Pari基础产生的胎儿基础生产段的胎儿生物合成途径的一般高滥用。 IPP甲基转移酶在萜烯合成途径中的整合使得萜箱结构空间的膨胀能够超出由异戊二烯规则预定的边界的边界,这表明通过C-5单元的缩合来限制合成。

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