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Development of an In Vitro Compartmentalization Screen for High-Throughput Directed Evolution of FeFe Hydrogenases

机译:高通量FeFe氢化酶定向进化的体外隔室筛选的开发。

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摘要

Background[FeFe] hydrogenase enzymes catalyze the formation and dissociation of molecular hydrogen with the help of a complex prosthetic group composed of common elements. The development of energy conversion technologies based on these renewable catalysts has been hindered by their extreme oxygen sensitivity. Attempts to improve the enzymes by directed evolution have failed for want of a screening platform capable of throughputs high enough to adequately sample heavily mutated DNA libraries. In vitro compartmentalization (IVC) is a powerful method capable of screening for multiple-turnover enzymatic activity at very high throughputs. Recent advances have allowed [FeFe] hydrogenases to be expressed and activated in the cell-free protein synthesis reactions on which IVC is based; however, IVC is a demanding technique with which many enzymes have proven incompatible.
机译:背景技术[FeFe]氢化酶借助由常见元素组成的复杂修复基团催化分子氢的形成和解离。基于这些可再生催化剂的能量转换技术的发展因其极高的氧气敏感性而受到阻碍。由于缺乏能够提供足够高的通量以足以充分采样重度突变的DNA文库的筛选平台,通过定向进化来改善酶的尝试失败了。体外区室化(IVC)是一种功能强大的方法,能够以非常高的通量筛选多周转酶活性。最近的进展使得[FeFe]氢化酶可以在IVC所基于的无细胞蛋白质合成反应中表达和激活。但是,IVC是一项要求很高的技术,许多酶已被证明不兼容。

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