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Harnessing biocompatible chemistry for developing improved and novel microbial cell factories

机译:利用生物相容性化学物质开发改良的新型微生物细胞工厂

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摘要

White biotechnology relies on the sophisticated chemical machinery inside living cells for producing a broad range of useful compounds in a sustainable and environmentally friendly way. However, despite the impressive repertoire of compounds that can be generated using white biotechnology, this approach cannot currently fully replace traditional chemical production, often relying on petroleum as a raw material. One challenge is the limited number of chemical transformations taking place in living organisms. Biocompatible chemistry, that is non‐enzymatic chemical reactions taking place under mild conditions compatible with living organisms, could provide a solution. Biocompatible chemistry is not a novel invention, and has since long been used by living organisms. Examples include Fenton chemistry, used by microorganisms for degrading plant materials, and manganese or ketoacids dependent chemistry used for detoxifying reactive oxygen species. However, harnessing biocompatible chemistry for expanding the chemical repertoire of living cells is a relatively novel approach within white biotechnology, and it could potentially be used for producing valuable compounds which living organisms otherwise are not able to generate. In this mini review, we discuss such applications of biocompatible chemistry, and clarify the potential that lies in using biocompatible chemistry in conjunction with metabolically engineered cell factories for cheap substrate utilization, improved cell physiology, efficient pathway construction and novel chemicals production.
机译:White Biotechnology依靠活细胞内部复杂的化学机械以可持续和环保的方式生产各种有用的化合物。然而,尽管使用白色生物技术可以产生令人印象深刻的化合物库,但这种方法目前无法完全取代传统的化学生产,而传统的化学生产通常依靠石油为原料。挑战之一是在活生物体中发生的化学转化数量有限。生物相容性化学,即在温和条件下与活生物体发生的非酶化学反应,可以提供解决方案。生物相容性化学并不是一个新颖的发明,并且早已被活生物体使用。实例包括微生物用于降解植物材料的Fenton化学,以及用于解毒活性氧的锰或酮酸依赖性化学。但是,利用生物相容性化学物质来扩展活细胞的化学成分是白色生物技术中的一种相对较新的方法,并且它有可能被用于生产有价值的化合物,否则生物将无法产生这些化合物。在这个小型综述中,我们讨论了生物相容性化学的此类应用,并阐明了将生物相容性化学与代谢工程化的细胞工厂结合使用的潜力,以廉价地利用底物,改善细胞生理学,有效的途径构建和新型化学药品生产。

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