National Institute of Advanced Industrial Science and Technology, Ikeda, Osaka 563-8577, Japan.
DBT-AIST International Laboratory for Advanced Biomedicine (DAILAB), Ikeda, Osaka 563-8577, Japan.
Molecules. 2020 Jun 30;25(13):2989. doi: 10.3390/molecules25132989.
Artificial metalloenzymes (ArMs) comprise a synthetic metal complex in a protein scaffold. ArMs display performances combining those of both homogeneous catalysts and biocatalysts. Specifically, ArMs selectively catalyze non-natural reactions and reactions inspired by nature in water under mild conditions. In the past few years, the construction of ArMs that possess a genetically incorporated unnatural amino acid and the directed evolution of ArMs have become of great interest in the field. Additionally, biochemical applications of ArMs have steadily increased, owing to the fact that compartmentalization within a protein scaffold allows the synthetic metal complex to remain functional in a sea of inactivating biomolecules. In this review, we present updates on: 1) the newly reported ArMs, according to their type of reaction, and 2) the unique biochemical applications of ArMs, including chemoenzymatic cascades and intracellular/ catalysis. We believe that ArMs have great potential as catalysts for organic synthesis and as chemical biology tools for pharmaceutical applications.
人工金属酶(ArMs)包含在蛋白质支架中的合成金属络合物。ArMs 结合了均相催化剂和生物催化剂的性能。具体来说,ArMs 在温和条件下的水中选择性催化非天然反应和受自然启发的反应。在过去的几年中,具有遗传掺入的非天然氨基酸的 ArMs 的构建和 ArMs 的定向进化已成为该领域的研究热点。此外,由于蛋白质支架内的隔室化允许合成金属络合物在大量失活的生物分子中保持功能,因此 ArMs 的生化应用也在稳步增加。在这篇综述中,我们根据反应类型介绍了新报道的 ArMs:1)以及 ArMs 的独特生化应用,包括化学酶级联和细胞内/催化。我们相信,ArMs 具有作为有机合成催化剂和作为药物应用的化学生物学工具的巨大潜力。