超嗜热菌
莽草酸
莽草酸途径
氧化还原酶
化学
立体化学
酶
转移酶
生物催化
活动站点
生物化学
脱氢酶
催化作用
反应机理
芳香族氨基酸
大肠杆菌
基因
作者
Jianhua Gan,Yan Wu,Ponraj Prabakaran,Yijun Gu,Yue Li,Michelle Andrykovitch,Hehua Liu,Yunchen Gong,Honggao Yan,Xinhua Ji
出处
期刊:Biochemistry
[American Chemical Society]
日期:2007-07-25
卷期号:46 (33): 9513-9522
被引量:26
摘要
The shikimate biosynthetic pathway is essential to microorganisms, plants, and parasites but absent from mammals. Therefore, shikimate dehydrogenase (SD) and other enzymes in the pathway are attractive targets for developing nontoxic antimicrobial agents, herbicides, and antiparasite drugs. SD catalyzes the fourth reaction in the pathway, the nicotinamide adenine dinucleotide phosphate- (NADP-) dependent reduction of 3-dehydroshikimic acid to shikimic acid (SA), as well as its reverse, by the transfer of a hydride. Previous structural studies reveal that the enzyme exists in two major conformations, an open and a closed form. For the reaction to occur, it is believed that the catalytic complex assumes the closed conformation. Nonetheless, the only structure containing both SA and NADP+ exhibits an open conformation (PDB entry 2EV9). Here, we present two crystal structures of Aquifex aeolicus SD, including a ternary complex with both SA and NADP+, which assumes the closed conformation and therefore contains a catalytically competent active site. On the basis of preexisting and novel structural and biochemical data, a catalytic mechanism is proposed.
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