方解石
沸石
化学
生物催化
金属有机骨架
火球菌属
类金刚石
纳米技术
拓扑(电路)
组合化学
有机化学
生物化学
材料科学
分子
催化作用
古细菌
吸附
反应机理
组合数学
基因
数学
作者
Huanrong Wang,Lin Han,Dong Zheng,Mingfang Yang,Yassin H. Andaloussi,Peng Cheng,Zhenjie Zhang,Shengqian Ma,Michael J. Zaworotko,Yifan Feng,Yao Chen
标识
DOI:10.1002/anie.202000299
摘要
Fabrication of zeolite-like metal-organic frameworks (ZMOFs) for advanced applications, such as enzyme immobilization, is of great interest but is a great synthetic challenge. Herein, we have developed a new strategy using proteins as structure-directed agents to direct the formation of new ZMOFs that can act as versatile platforms for the in situ encapsulation of proteins under ambient conditions. Notably, protein incorporation directs the formation of a ZMOF with a sodalite (sod) topology instead of a non-porous diamondoid (dia) topology under analogous synthetic conditions. Histidines in proteins play a crucial role in the observed templating effect. Modulating histidine content thereby influenced the resultant MOF product (from dia to dia + sod mixture and, ultimately, to sod MOF). Moreover, the resulting ZMOF-incorporated proteins preserved their activity even after exposure to high temperatures and organic solvents, demonstrating their potential for biocatalysis and biopharmaceutical applications.
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