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The expanded landscape of metalloproteins by genetic incorporation of noncanonical amino acids

机译:通过非经典氨基酸的基因掺入扩大金属蛋白的景观

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摘要

Proteins are versatile macromolecules whose sequence space and chemical scope can be expanded infinitely. A chemical toolbox other than the 20 canonical amino acids can further diversify protein structure and function. Indeed, genetic code expansion to incorporate noncanonical amino acids (ncAAs) has extensively flourished metalloproteins in various aspects. This review focuses on artificial metalloproteins and metalloenzym.es built using ncAAs, which operate directly as metal-ligating ligands, modulate the chemical properties of metallocofactors within unique secondary coordinating microenvironments, or provide unique functions. As a result, self-assembled protein architectures or novel catalytic activities have been created, showing the expanded landscape of metalloproteins. We also discuss potential prospects for ncAAs and their future applications in the design of protein-based biomaterials and biocatalysts.
机译:蛋白质是多功能的大分子,其序列空间和化学范围可以无限扩展。除 20 种典型氨基酸外,其他化学工具箱可以进一步使蛋白质结构和功能多样化。事实上,结合非经典氨基酸 (ncAA) 的遗传密码扩增在各个方面广泛地繁荣了金属蛋白。本文重点研究了使用ncAA构建的人造金属蛋白和 metalloenzym.es,ncAAs直接作为金属连接配体发挥作用,在独特的二级配位微环境中调节金属因子的化学性质,或提供独特的功能。结果,自组装蛋白质结构或新的催化活性被创造出来,显示了金属蛋白的扩展景观。我们还讨论了ncAAs的潜在前景及其在蛋白质基生物材料和生物催化剂设计中的未来应用。

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