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Fatty Acid Biosynthesis Revisited: Structure Elucidation and Metabolic Engineering

机译:脂肪酸生物合成再谈:结构阐明和代谢工程。

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摘要

Fatty acids are primary metabolites synthesized by complex, elegant, and essential biosynthetic machinery. Fatty acid synthases resemble an iterative assembly line, with an acyl carrier protein conveying the growing fatty acid to necessary enzymatic domains for modification. Each catalytic domain is a unique enzyme spanning a wide range of folds and structures. Although they harbor the same enzymatic activities, two different types of fatty acid synthase architectures are observed in nature. During recent years, strained petroleum supplies have driven interest in engineering organisms to either produce more fatty acids or specific high value products. Such efforts require a fundamental understanding of the enzymatic activities and regulation of fatty acid synthases. Despite more than one hundred years of research, we continue to learn new lessons about fatty acid synthases’ many intricate structural and regulatory elements. In this review, we summarize each enzymatic domain and discuss efforts to engineer fatty acid synthases, providing some clues to important challenges and opportunities in the field.
机译:脂肪酸是通过复杂,优雅且必不可少的生物合成机制合成的主要代谢产物。脂肪酸合酶类似于迭代装配线,其中的酰基载体蛋白将生长中的脂肪酸输送至必要的酶结构域以进行修饰。每个催化结构域都是独特的酶,跨越广泛的折叠和结构。尽管它们具有相同的酶促活性,但在自然界中观察到两种不同类型的脂肪酸合酶结构。近年来,紧张的石油供应推动了对工程有机体产生更多脂肪酸或特定高价值产品的兴趣。此类工作需要对酶活性和脂肪酸合酶的调节有基本的了解。尽管进行了一百多年的研究,但我们仍在继续学习有关脂肪酸合酶许多复杂的结构和调节元素的新课程。在这篇综述中,我们总结了每个酶促结构域,并讨论了工程化脂肪酸合酶的工作,为该领域的重要挑战和机遇提供了一些线索。

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