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阐明磺酰脲类除草剂与乙酰羟酸合酶的结合特异性。

Elucidating the specificity of binding of sulfonylurea herbicides to acetohydroxyacid synthase.

作者信息

McCourt Jennifer A, Pang Siew Siew, Guddat Luke W, Duggleby Ronald G

机构信息

Department of Biochemistry and Molecular Biology, The University of Queensland, Brisbane, Queensland 4072, Australia.

出版信息

Biochemistry. 2005 Feb 22;44(7):2330-8. doi: 10.1021/bi047980a.

Abstract

Acetohydroxyacid synthase (AHAS, EC 2.2.1.6) is the target for the sulfonylurea herbicides, which act as potent inhibitors of the enzyme. Chlorsulfuron (marketed as Glean) and sulfometuron methyl (marketed as Oust) are two commercially important members of this family of herbicides. Here we report crystal structures of yeast AHAS in complex with chlorsulfuron (at a resolution of 2.19 A), sulfometuron methyl (2.34 A), and two other sulfonylureas, metsulfuron methyl (2.29 A) and tribenuron methyl (2.58 A). The structures observed suggest why these inhibitors have different potencies and provide clues about the differential effects of mutations in the active site tunnel on various inhibitors. In all of the structures, the thiamin diphosphate cofactor is fragmented, possibly as the result of inhibitor binding. In addition to thiamin diphosphate, AHAS requires FAD for activity. Recently, it has been reported that reduction of FAD can occur as a minor side reaction due to reaction with the carbanion/enamine of the hydroxyethyl-ThDP intermediate that is formed midway through the catalytic cycle. Here we report that the isoalloxazine ring has a bent conformation that would account for its ability to accept electrons from the hydroxyethyl intermediate. Most sequence and mutation data suggest that yeast AHAS is a high-quality model for the plant enzyme.

摘要

乙酰羟酸合酶(AHAS,EC 2.2.1.6)是磺酰脲类除草剂的作用靶点,这类除草剂是该酶的强效抑制剂。氯磺隆(商品名Glean)和甲磺隆(商品名Oust)是这类除草剂中两个具有重要商业价值的成员。在此,我们报道了酵母AHAS与氯磺隆(分辨率为2.19 Å)、甲磺隆(2.34 Å)以及另外两种磺酰脲类除草剂,即甲基磺草酮(2.29 Å)和苯磺隆(2.58 Å)形成复合物的晶体结构。所观察到的结构揭示了这些抑制剂为何具有不同的效力,并为活性位点通道中的突变对各种抑制剂的不同影响提供了线索。在所有结构中,硫胺二磷酸辅因子发生了断裂,这可能是抑制剂结合的结果。除了硫胺二磷酸外,AHAS的活性还需要FAD。最近有报道称,由于与催化循环中途形成的羟乙基 - ThDP中间体的碳负离子/烯胺反应,FAD的还原可能作为一种次要的副反应发生。在此我们报道异咯嗪环具有一种弯曲构象,这可以解释其从羟乙基中间体接受电子的能力。大多数序列和突变数据表明酵母AHAS是植物酶的一个高质量模型。

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