通过对半皮纳科尔进行反选择性重新排列来催化C-C键形成的工程制造的Flavin-DependentHalogenases
Xuzhong Shen1, Paras Gupta1, Pratibha Gandhi1
1Department of Chemistry, Indiana University, Bloomington, Indiana 47405, United States.
弗拉依赖的基酶催化对合醇的半选择性重新排列,从而产生奇拉基. 一个T52G突变使这种新的生物催化转化成为可能, 扩大了对有价值的分子支架的访问.
科学领域:
- 合成有机化学
- 生物催化
- 酶工程
背景情况:
- 半皮纳科尔的重新排列对于合成分子支架至关重要.
- 现有的半皮纳科拉斯是有限的,只有一个使用布伦斯特酸催化剂的自然新实例.
- 众所周知,黄素依赖酶 (FDH) 发生化反应.
研究的目的:
- 探索黄素依赖酶 (FDHs) 在催化半醇重组中的潜力.
- 开发一种生物催化方法来对半皮纳科尔进行反选择性重新排列.
- 研究新型催化功能的酶工程策略.
主要方法:
- 用于催化半皮纳科尔重组的黄酶 (FDHs).
- 作为基质使用了前性合醇.
- 研究了特定突变,如T52G在酶活性中的作用.
- 分析了基质范围和反应的抗选择性.
主要成果:
- FDHs成功催化了对醇的反选择性半醇重组.
- 生物催化平台表现出广泛的基质范围,产生具有四级立体中心的奇拉基.
- 达到了高反选择性和16.86±0.97分钟的
cat值,这是FDH催化中最高的值. - 通过重塑酶的活性部位, 确定T52G突变对实现这种非原生转化至关重要.
结论:
- 能够进行非原生功能的半皮纳科尔重组.
- 本研究提供了使用FDH的非对称C-C键构造的第一个例子.
- 开发的生物催化平台提供了富含的碳循环和异态循环,强调了酶的催化灵活性.
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