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Chimeras of Two Isoprenoid Synthases Catalyze All Four Coupling Reactions in Isoprenoid Biosynthesis

机译:两种类异戊二烯合酶的嵌合体催化类异戊二烯生物合成中的所有四个偶联反应。

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The carbon skeletons of over 55,000 naturally occurring isoprenoid compounds are constructed from four fundamental coupling reactions: chain elongation, cyclopropanation, branching, and cyclobutanation. Enzymes that catalyze chain elongation and cyclopropanation are well studied, whereas those that catalyze branching and cydobutanation are unknown. We have catalyzed the four reactions with chimeric proteins generated by replacing segments of a chain-elongation enzyme with corresponding sequences from a cyclopropanation enzyme. Stereochemical and mechanistic considerations suggest that the four coupling enzymes could have evolved from a common ancestor through relatively small changes in the catalytic site.
机译:超过55,000种天然类异戊二烯化合物的碳骨架是由四个基本的偶联反应构成的:链延长,环丙烷化,支化和环丁烷化。催化链延长和环丙烷化的酶已得到很好的研究,而催化分支和环丁烷化的酶尚不清楚。我们已经用嵌合蛋白催化了四个反应,这些嵌合蛋白是通过用来自环丙烷化酶的相应序列替换链延长酶的片段而产生的。立体化学和机械学方面的考虑表明,四种偶联酶可能是通过催化位点的相对较小变化从共同祖先进化而来的。

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