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Artificial Metalloenzymes Constructed From Hierarchically-Assembled Proteins

机译:从层次组装蛋白构建的人工金属酶

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摘要

The design of artificial metalloenzymes has become an important topic in biological chemistry and inorganic chemistry due to the potential applications of artificial metalloenzymes in nanoscience and biotechnology. One of the general methods used to produce artificially metalloenzymes involves the encapsulation of non-natural metal cofactors within protein scaffolds. This method has been used in the construction of small artificial metallo-proteins with high activity and selectivity. However, the important roles of protein assemblies have not yet been systematically investigated in this field, even though natural enzymatic systems employ protein assemblies as molecular scaffolds for elaborate enzymatic reactions. In recent years, the above-mentioned general strategy has been applied to functionalize protein assemblies such as protein cages and protein crystals. These assembled structures form confined interior environments, which can be used to accommodate metal complex catalysts and to prepare metal nanoparticles. The development of artificial metalloenzymes with hierarchically-assembled proteins would enable us to provide powerful tools for industrial and biological applications. In this Focus Review, we discuss the most significant recent research in this field as well as future directions.
机译:由于人工金属酶在纳米科学和生物技术中的潜在应用,人工金属酶的设计已成为生物化学和无机化学中的重要课题。用于产生人工金属酶的一般方法之一涉及将非天然金属辅因子包封在蛋白质支架中。该方法已用于构建具有高活性和选择性的小型人造金属蛋白。然而,尽管天然酶系统采用蛋白质组装作为分子框架进行精细的酶促反应,但蛋白质组装的重要作用尚未在该领域进行系统的研究。近年来,上述一般策略已用于功能化蛋白质组装体,例如蛋白质笼和蛋白质晶体。这些组装的结构形成受限的内部环境,可用于容纳金属络合物催化剂并制备金属纳米粒子。具有层次组装蛋白的人工金属酶的发展将使我们能够为工业和生物应用提供强大的工具。在本焦点回顾中,我们讨论了该领域中最重要的最新研究以及未来的方向。

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