首页> 外文期刊>Chembiochem: A European journal of chemical biology >Sesquiterpene synthases Cop4 and Cop6 from Coprinus cinereus: Catalytic promiscuity and cyclization of farnesyl pyrophosphate geometric isomers
【24h】

Sesquiterpene synthases Cop4 and Cop6 from Coprinus cinereus: Catalytic promiscuity and cyclization of farnesyl pyrophosphate geometric isomers

机译:灰粉鬼伞的倍半萜烯合酶Cop4和Cop6:法呢基焦磷酸几何异构体的催化混杂和环化

获取原文
获取原文并翻译 | 示例
       

摘要

Sesquiterpene synthases catalyze with different catalytic fidelity the cyclization of farnesyl pyrophosphate (FPP) into hundreds of known compounds with diverse structures and stereochemistries. Two sesquiterpene synthases, Cop4 and Cop6, were previously isolated from Coprinus cinereus as part of a fungal genome survey. This study investigates the reaction mechanism and catalytic fidelity of the two enzymes. Cyclization of all-trans-FPP ((E,E)-FPP) was compared to the cyclization of the cis-trans isomer of FPP ((Z,E)-FPP) as a surrogate for the secondary cisoid neryl cation intermediate generated by sesquiterpene synthases, which are capable of isomerizing the C2-C3 π bond of all-trans-FPP. Cop6 is a "high-fidelity" α-cuprenene synthase that retains its fidelity under various conditions tested. Cop4 is a catalytically promiscuous enzyme that cyclizes (E,E)-FPP into multiple products, including (-)-germacrene D and cubebol. Changing the pH of the reaction drastically alters the fidelity of Cop4 and makes it a highly selective enzyme. Cyclization of (Z,E)-FPP by Cop4 and Cop6 yields products that are very different from those obtained with (E,E)-FPP. Conversion of (E,E)-FPP proceeds via a (6R)-β-bisabolyl carbocation in the case of Cop6 and an (E,E)-germacradienyl carbocation in the case of Cop4. However, (Z,E)-FPP is cyclized via a (6S)-β-bisabolene carbocation by both enzymes. Structural modeling suggests that differences in the active site and the loop that covers the active site of the two enzymes might explain their different catalytic fidelities.
机译:倍半萜烯合酶以不同的催化保真度催化焦磷酸法呢基酯(FPP)环化成数百种具有不同结构和立体化学的已知化合物。作为真菌基因组调查的一部分,先前从灰粉鬼伞分离了两个倍半萜烯合酶Cop4和Cop6。这项研究调查了两种酶的反应机理和催化保真度。比较了全反式FPP((E,E)-FPP)的环化与FPP((Z,E)-FPP)的顺反异构体的环化,作为由倍半萜烯合酶,其能够异构化全反式FPP的C2-C3π键。 Cop6是一种“高保真”α-戊二烯合酶,​​可在各种测试条件下保持其保真度。 Cop4是一种催化混杂酶,可将(E,E)-FPP环化成多种产物,包括(-)-germacrene D和cubebol。改变反应的pH值会极大地改变Cop4的保真度,使其成为一种高度选择性的酶。 Cop4和Cop6对(Z,E)-FPP的环化产生的产物与(E,E)-FPP所获得的产物非常不同。 (E,E)-FPP的转化在Cop6的情况下通过(6R)-β-双羰基碳正离子化进行,在Cop4的情况下通过(E,E)-germacradienyl碳正离子化进行。但是,(Z,E)-FPP经由(6S)-β-bisabolene碳正离子化被这两种酶环化。结构建模表明,活性位点和覆盖两种酶活性位点的环的差异可能解释了它们不同的催化保真度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号