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首页> 外文期刊>Nature Communications >Emergence of terpene cyclization in Artemisia annua
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Emergence of terpene cyclization in Artemisia annua

机译:萜烯环化在青蒿中的出现

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摘要

The emergence of terpene cyclization was critical to the evolutionary expansion of chemical diversity yet remains unexplored. Here we report the first discovery of an epistatic network of residues that controls the onset of terpene cyclization in Artemisia annua . We begin with amorpha-4,11-diene synthase ( ADS ) and ( E )-β-farnesene synthase ( BFS ), a pair of terpene synthases that produce cyclic or linear terpenes, respectively. A library of ~27,000 enzymes is generated by breeding combinations of natural amino-acid substitutions from the cyclic into the linear producer. We discover one dominant mutation is sufficient to activate cyclization, and together with two additional residues comprise a network of strongly epistatic interactions that activate, suppress or reactivate cyclization. Remarkably, this epistatic network of equivalent residues also controls cyclization in a BFS homologue from Citrus junos. Fitness landscape analysis of mutational trajectories provides quantitative insights into a major epoch in specialized metabolism.
机译:萜烯环化的出现对于化学多样性的进化扩展至关重要,但尚未被探索。在这里我们报告的第一个发现的残留的残留网络控制蒿中萜环化的发生。我们从amorpha-4,11-diene合酶(ADS)和(E)-β-farnesene合酶(BFS)开始,这是一对分别产生环状或线性萜烯的萜烯合酶。通过育种从循环到线性生产者的天然氨基酸取代组合,可生成约27,000个酶的文库。我们发现一个显性突变足以激活环化作用,并与另外两个残基一起组成一个强烈上位性相互作用的网络,从而激活,抑制或重新激活环化作用。值得注意的是,这种等效残基的上位性网络还控制了来自柑桔的BFS同源物中的环化作用。突变轨迹的适应度景观分析为专业代谢的主要时期提供了定量的见解。

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