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直接成像金属-有机框架中的蛋白质簇。

Direct Imaging of Protein Clusters in Metal-Organic Frameworks.

机构信息

Key Lab for Industrial Biocatalysis, Ministry of Education, Department of Chemical Engineering, Tsinghua University, Beijing 100084, China.

The State Key Laboratory of Chemical Engineering, Department of Chemical Engineering, Tsinghua University, Beijing 100084, China.

出版信息

J Am Chem Soc. 2024 May 8;146(18):12565-12576. doi: 10.1021/jacs.4c01483. Epub 2024 Apr 25.

Abstract

Protein@metal-organic frameworks (P@MOFs) prepared by coprecipitation of protein, metal ions, and organic ligands represent an effective method for protein stabilization with a wide spectrum of applications. However, the formation mechanism of P@MOFs via the coprecipitation process and the reason why proteins can retain their biological activity in the frameworks with highly concentrated metal ions remain unsettled. Here, by a combined methodology of single molecule localization microscopy and clustering analysis, we discovered that in this process enzyme molecules form clusters with metal ions and organic ligands, contributing to both the nucleation and subsequent crystal growth. We proposed that the clusters played an important role in the retention of overall enzymatic activity by sacrificing protein molecules on the cluster surface. This work offers fresh perspectives on protein behaviors in the formation of P@MOFs, inspiring future endeavors in the design and development of artificial bionanocomposites with high biological activities.

摘要

通过蛋白质、金属离子和有机配体共沉淀制备的蛋白质@金属-有机骨架(P@MOFs)是一种有效的蛋白质稳定方法,具有广泛的应用。然而,通过共沉淀过程形成 P@MOFs 的形成机制以及为什么蛋白质在高浓度金属离子的骨架中仍能保持其生物活性,这一问题仍未得到解决。在这里,我们通过单分子定位显微镜和聚类分析的组合方法,发现在此过程中,酶分子与金属离子和有机配体形成簇,为成核和随后的晶体生长做出贡献。我们提出,簇在牺牲簇表面的蛋白质分子的情况下,对保留整体酶活性起着重要作用。这项工作为蛋白质在 P@MOFs 形成过程中的行为提供了新的视角,为具有高生物活性的人工仿生复合材料的设计和开发提供了新的思路。

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