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Biotransformations Utilizing β-Oxidation Cycle Reactions in the Synthesis of Natural Compounds and Medicines

机译:利用β氧化循环反应进行天然化合物和药物合成的生物转化

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摘要

β-Oxidation cycle reactions, which are key stages in the metabolism of fatty acids in eucaryotic cells and in processes with a significant role in the degradation of acids used by microbes as a carbon source, have also found application in biotransformations. One of the major advantages of biotransformations based on the β-oxidation cycle is the possibility to transform a substrate in a series of reactions catalyzed by a number of enzymes. It allows the use of sterols as a substrate base in the production of natural steroid compounds and their analogues. This route also leads to biologically active compounds of therapeutic significance. Transformations of natural substrates via β-oxidation are the core part of the synthetic routes of natural flavors used as food additives. Stereoselectivity of the enzymes catalyzing the stages of dehydrogenation and addition of a water molecule to the double bond also finds application in the synthesis of chiral biologically active compounds, including medicines. Recent advances in genetic, metabolic engineering, methods for the enhancement of bioprocess productivity and the selectivity of target reactions are also described.
机译:β-氧化循环反应是真核细胞中脂肪酸代谢的关键阶段,并且在微生物用作碳源的酸的降解中起着重要作用的过程中也已发现其在生物转化中的应用。基于β-氧化循环的生物转化的主要优势之一是可以在多种酶催化的一系列反应中转化底物。它允许在天然类固醇化合物及其类似物的生产中将甾醇用作底物基质。该途径还导致具有治疗意义的生物活性化合物。通过β-氧化作用转化天然底物是用作食品添加剂的天然香料合成路线的核心部分。催化脱氢阶段和向双键添加水分子的酶的立体选择性也可用于合成手性生物活性化合物,包括药物。还介绍了遗传,代谢工程,提高生物过程生产率和目标反应选择性的方法的最新进展。

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