天然蛋白质模板辅助合成非天然金属硫簇

BioChem Pub Date : 2022-08-01 DOI:10.3390/biochem2030013
B. Maiti, J. Moura
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引用次数: 0

摘要

金属酶是最熟练的天然催化剂,负责多种生物化学转化,引入优异的选择性和高速率,利用金属离子和蛋白质之间复杂的相互关系。受大自然的启发,化学家开始使用天然存在的蛋白质作为模板,以容纳非天然金属催化剂,用于药物,生物技术和工业用途的可持续分子合成。因此,金属酶是设计人工生物催化剂的相关靶点。寻找和开发能够承载高选择性金属的新型支架将大大扩展生物催化的范围。为了应对这一挑战,本文以三种天然支架:[1Fe-4Cys](红氧还蛋白)、[3Fe-4S](铁氧还蛋白)和[S2MoS2CuS2MoS2]-ORP(橙色蛋白)蛋白质支架为案例研究,描述了合成非天然单体到混合金属硫簇的模板,它们模拟了天然含镍金属酶,包括[Ni- fe]氢化酶和[Ni- fe] CO脱氢酶。非天然金属取代金属蛋白不仅具有催化作用,而且可作为光谱探针。
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Native Protein Template Assisted Synthesis of Non-Native Metal-Sulfur Clusters
Metalloenzymes are the most proficient nature catalysts that are responsible for diverse biochemical transformations introducing excellent selectivity and performing at high rates, using intricate mutual relationships between metal ions and proteins. Inspired by nature, chemists started using naturally occurring proteins as templates to harbor non-native metal catalysts for the sustainable synthesis of molecules for pharmaceutical, biotechnological and industrial purposes. Therefore, metalloenzymes are the relevant targets for the design of artificial biocatalysts. The search and development of new scaffolds capable of hosting metals with high levels of selectivity could significantly expand the scope of bio-catalysis. To meet this challenge, herein, three native scaffolds: [1Fe-4Cys] (rubredoxin), [3Fe-4S] (ferredoxin), and [S2MoS2CuS2MoS2]-ORP (orange protein) protein scaffolds are case studies describing templates for the synthesis of non-native monomeric to mixed metal–sulfur clusters, which mimic native Ni containing metalloenzymes including [Ni-Fe] Hydrogenase and [Ni-Fe] CO Dehydrogenase. The non-native metal-substituted metalloproteins are not only useful for catalysis but also as spectroscopic probes.
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