生物化学
酰基载体蛋白
酶
结构生物学
大肠杆菌
生物合成
细菌
化学
脂肪酸合成
生物
合成生物学
脂肪酸
基因
计算生物学
遗传学
作者
Stephen W. White,Jie Zheng,Yong-Mei Zhang,Charles O. Rock
标识
DOI:10.1146/annurev.biochem.74.082803.133524
摘要
▪ Abstract The type II fatty acid synthetic pathway is the principal route for the production of membrane phospholipid acyl chains in bacteria and plants. The reaction sequence is carried out by a series of individual soluble proteins that are each encoded by a discrete gene, and the pathway intermediates are shuttled between the enzymes as thioesters of an acyl carrier protein. The Escherichia coli system is the paradigm for the study of this system, and high-resolution X-ray and/or NMR structures of representative members of every enzyme in the type II pathway are now available. The structural biology of these proteins reveals the specific three-dimensional features of the enzymes that explain substrate recognition, chain length specificity, and the catalytic mechanisms that define their roles in producing the multitude of products generated by the type II system. These structures are also a valuable resource to guide antibacterial drug discovery.
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