通过可点击的非规范性氨基酸进行酸-基循环添加的双核铜酶的回合成设计
Yunjong Lee1, Jaewon Moon1, Kyu Jin Son1
1Department of Chemistry, Seoul National University, Seoul 08826, Republic of Korea.
Journal of the American Chemical Society
|October 21, 2025
概括
研究人员设计了一种蛋白质以催化铜催化酸循环添加 (CuAAC) 反应,实现比基准配体更高的速率. 这一突破利用了金属酶工程中的多联体的遗传编码前体.
科学领域:
- 生物化学
- 有机生物化学
- 蛋白质工程
背景情况:
- 铜催化酸循环添加 (CuAAC) 对于合成和生物应用至关重要,它依赖于优化的铜结合联体.
- 现有的基于蛋白质的配体尚未专门设计用于催化CuAAC反应.
研究的目的:
- 为CuAAC催化开发一种新的,自下而上的蛋白质基联体.
- 将天然的同位素转化为功能性金属酶,模仿已知的CuAAC连接体框架.
主要方法:
- 通过可点击的非正规氨基酸结合金属化氨基酸的复合蛋白设计.
- 通过CuAAC介导的转化后修饰,用于配体的发展.
- 用dTDP-4-keto-6-deoxy-D-hexulose 3,5-epimerase进行工程,以创建含有多牙的三醇基因.
主要成果:
- 工程蛋白构造R79TP与外源基质显示出显著的CuAAC活性.
- 取得的催化速率超过了基准配体的催化速率,这表明双核铜机制.
- 在两个铜结合点成功创建了四个原子的蛋白质支架.
结论:
- 基因编码的前体提供了一个强大的策略,可以在蛋白质中创建多联体.
- 这项工作扩大了金属酶工程和生物直角催化作用的范围.
- 工程蛋白提供了对铜介导反应和未来应用的机械洞察力.
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