放线菌素
聚酮
立体化学
聚酮合酶
立体专一性
生物
活动站点
酶
对接(动物)
结构母题
突变体
药效团
生物合成
生物化学
化学
基因
催化作用
护理部
医学
作者
P. Javidpour,Joel Bruegger,Supawadee Srithahan,Tyler P. Korman,Matthew P. Crump,John Crosby,Michael D. Burkart,Shiou‐Chuan Tsai
出处
期刊:Chemistry & Biology
[Elsevier]
日期:2013-10-01
卷期号:20 (10): 1225-1234
被引量:34
标识
DOI:10.1016/j.chembiol.2013.07.016
摘要
In the actinorhodin type II polyketide synthase, the first polyketide modification is a regiospecific C9-carbonyl reduction, catalyzed by the ketoreductase (actKR). Our previous studies identified the actKR 94-PGG-96 motif as a determinant of stereospecificity. The molecular basis for reduction regiospecificity is, however, not well understood. In this study, we examined the activities of 20 actKR mutants through a combination of kinetic studies, PKS reconstitution, and structural analyses. Residues have been identified that are necessary for substrate interaction, and these observations have suggested a structural model for this reaction. Polyketides dock at the KR surface and are steered into the enzyme pocket where C7–C12 cyclization is mediated by the KR before C9-ketoreduction can occur. These molecular features can potentially serve as engineering targets for the biosynthesis of novel, reduced polyketides.
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