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Use of the confined spaces of apo-ferritin and virus capsids as nanoreactors for catalytic reactions

机译:载脂蛋白-铁蛋白和病毒衣壳的狭窄空间作为纳米反应器用于催化反应

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摘要

Self-assembled protein cages providing nanosized internal spaces which are capable of encapsulating metal ions/complexes, enzymes/proteins have great potential for use as catalytic nanoreactors in efforts to mimic confined cellular environments for synthetic applications. Despite many uses in biomineralization, drug delivery, bio-imaging and so on, applications in catalysis are relatively rare. Because of their restricted size, protein cages are excellent candidates for use as vessels to exert control over reaction kinetics and product selectivity. Virus capsids with larger internal spaces can encapsulate multiple enzymes and can mimic natural enzymatic reactions. The apo-ferritin cage is known to accommodate various metal ions/complexes and suitable for organic transformation reactions in an aqueous medium. This review highlights the importance, prospects and recent significant research on catalytic reactions using the apo-ferritin cage and virus capsids.
机译:自组装蛋白笼提供了能够封装金属离子/复合物的纳米级内部空间,酶/蛋白具有巨大的潜力,可以用作催化纳米反应器,以模拟用于合成应用的受限细胞环境。尽管在生物矿化,药物输送,生物成像等方面有许多用途,但在催化中的应用相对较少。由于其尺寸受限制,蛋白质笼非常适合用作控制反应动力学和产物选择性的容器。内部空间较大的病毒衣壳可以封装多种酶,并且可以模拟自然的酶促反应。载脂铁蛋白笼已知容纳各种金属离子/络合物,并且适合在水性介质中进行有机转化反应。这篇综述突出了使用载铁蛋白铁蛋白笼和病毒衣壳的催化反应的重要性,前景和近期的重要研究。

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