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Exploring the catalytic cascade of cembranoid biosynthesis by combination of genetic engineering and molecular simulations

机译:通过基因工程和分子模拟的组合探索CEMBRANOID生物合成的催化级联

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摘要

While chemical steps involved in bioactive cembranoid biosynthesis have been examined, the corresponding enzymatic mechanisms leading to their formation remain elusive. In the tobacco plant, Nicotiana tabacum, a putative cembratriene-ol synthase (CBTS) initiates the catalytic cascade that lead to the biosynthesis of cembratriene-4,6-diols, which displays antibacterial- and anti-proliferative activities. We report here on structural homology models, functional studies, and mechanistic explorations of this enzyme using a combination of biosynthetic and computational methods. This approach guided us to develop an efficient de novo production of five bioactive non- and monohydroxylated cembranoids. Our homology models in combination with quantum and classical simulations suggested putative principles of the CBTS catalytic cycle, and provided a possible rationale for the formation of premature olefinic side products. Moreover, the functional reconstruction of a N. tabacum-derived class II P450 with a cognate CPR, obtained by transcriptome mining provided for production of bioactive cembratriene-4,6-diols. Our combined findings provide mechanistic insights into cembranoid biosynthesis, and a basis for the sustainable industrial production of highly valuable bioactive cembranoids.
机译:虽然已经检查了参与生物活性CEMBRANOID生物合成的化学步骤,但是导致其形成的相应酶促机制仍然难以捉摸。在烟草植物中,尼古拉菌塔瓦姆,推定的CeMbratriene-OL合成酶(CBT)引发催化级联,其导致Cembratriene-4,6-二醇的生物合成,其显示抗菌和抗增殖性活性。我们在此报告使用生物合成和计算方法的组合的结构性同源性模型,功能性研究和机械探索。这种方法引导我们开发有效的五种生物活性非和单羟基化的Cembranoid的Novo生产。我们的同源模型与量子和古典模拟相结合,建议了CBT催​​化循环的推定原理,并提供了用于形成早产的烯烯侧产物的理由。此外,通过提供了用于生产生物活性CEMBRATRIENE-4,6-二醇的转录组挖掘获得的N.Babacum衍生II类P450的N.Babacum衍生II类P450的功能重建。我们的合并调查结果为CEMBRANOID生物合成提供机械洞察力,以及可持续工业生产的高价值生物活性CEMBRANOIDS的基础。

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