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模拟固态中的血红素酶:选择性包裹血红素的金属有机材料。

Mimicking heme enzymes in the solid state: metal-organic materials with selectively encapsulated heme.

机构信息

Department of Chemistry, University of South Florida, 4202 East Fowler Avenue, Tampa, Florida 33620, USA.

出版信息

J Am Chem Soc. 2011 Jul 13;133(27):10356-9. doi: 10.1021/ja203068u. Epub 2011 Jun 20.

Abstract

To carry out essential life processes, nature has had to evolve heme enzymes capable of synthesizing and manipulating complex molecules. These proteins perform a plethora of chemical reactions utilizing a single iron porphyrin active site embedded within an evolutionarily designed protein pocket. We herein report the first class of metal-organic materials (MOMs) that mimic heme enzymes in terms of both structure and reactivity. The MOMzyme-1 class is based upon a prototypal MOM, HKUST-1, into which catalytically active metalloporphyrins are selectively encapsulated in a "ship-in-a-bottle" fashion within one of the three nanoscale cages that exist in HKUST-1. MOMs offer unparalleled levels of permanent porosity and their modular nature affords enormous diversity of structures and properties. The MOMzyme-1 class could therefore represent a new paradigm for heme biomimetic catalysis since it combines the activity of a homogeneous catalyst with the stability and recyclability of heterogeneous catalytic systems within a single material.

摘要

为了进行基本的生命过程,自然界必须进化出能够合成和操纵复杂分子的血红素酶。这些蛋白质利用单个铁卟啉活性位点在进化设计的蛋白质口袋中执行多种化学反应。我们在此报告了第一类在结构和反应性方面模拟血红素酶的金属有机材料 (MOMs)。MOMzyme-1 类基于原型 MOM,HKUST-1,其中催化活性的金属卟啉以“船在瓶中”的方式选择性地封装在 HKUST-1 中存在的三个纳米级笼之一中。MOM 提供了无与伦比的永久孔隙率,其模块化性质提供了结构和性质的巨大多样性。因此,MOMzyme-1 类可能代表血红素仿生催化的新范例,因为它将均相催化剂的活性与单一材料中多相催化系统的稳定性和可回收性结合在一起。

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