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Synthesis of 11-carbon terpenoids in yeast using protein and metabolic engineering

机译:使用蛋白质和代谢工程合成酵母11碳三萜

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摘要

One application of synthetic biology is the redesign of existing biological systems to acquire new functions. In this context, expanding the chemical code underlying key biosynthetic pathways will lead to the synthesis of compounds with new structures and potentially new biological activities. Terpenoids are a large group of specialized metabolites with numerous applications. Yet, being synthesized from five-carbon units, they are restricted to distinct classes that differ by five carbon atoms (C10, C15, C20, etc.). To expand the diversity of terpenoid structures, we engineered yeast cells to synthesize a noncanonical building block with 11 carbons, and produced 40 C11 terpene scaffolds that can form the basis for an entire terpenoid class. By identifying a single-residue switch that converts C10 plant monoterpene synthases to C11-specific enzymes, we engineered dedicated synthases for C11 terpene production. This approach will enable the systematic expansion of the chemical space accessed by terpenoids.
机译:合成生物学的一种应用是现有的生物系统重新设计,以获得新功能。在这种情况下,扩展潜在的关键生物合成途径的化学代码将导致具有新结构和潜在新的生物活性的化合物的合成。 Terpenoids是一大群专门的代谢物,具有许多应用。然而,由五碳单元合成,它们仅限于不同碳原子(C10,C15,C20等的不同类别。为了扩大萜类结构的多样性,我们设计了酵母细胞,用11个碳,合成非甘露透明的建筑块,并产生了40c11萜烯支架,可以为整个萜件类形成基础。通过识别将C10植物单萜合酶转化为C11特异性酶的单残基开关,我们为C11萜烯生产设计了专用的合成酶。这种方法将使萜类化合物获得的化学空间的系统扩展。

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