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生物合成无机化学。

Biosynthetic inorganic chemistry.

作者信息

Lu Yi

机构信息

Department of Chemistry, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

Angew Chem Int Ed Engl. 2006 Aug 25;45(34):5588-601. doi: 10.1002/anie.200600168.

Abstract

Inorganic chemistry and biology can benefit greatly from each other. Although synthetic and physical inorganic chemistry have been greatly successful in clarifying the role of metal ions in biological systems, the time may now be right to utilize biological systems to advance coordination chemistry. One such example is the use of small, stable, easy-to-make, and well-characterized proteins as ligands to synthesize novel inorganic compounds. This biosynthetic inorganic chemistry is possible thanks to a number of developments in biology. This review summarizes the progress in the synthesis of close models of complex metalloproteins, followed by a description of recent advances in using the approach for making novel compounds that are unprecedented in either inorganic chemistry or biology. The focus is mainly on synthetic "tricks" learned from biology, as well as novel structures and insights obtained. The advantages and disadvantages of this biosynthetic approach are discussed.

摘要

无机化学和生物学能够从彼此身上受益匪浅。尽管合成无机化学和物理无机化学在阐明金属离子在生物体系中的作用方面取得了巨大成功,但现在或许正是利用生物体系推动配位化学发展的时候了。一个这样的例子是使用小的、稳定的、易于制备且表征良好的蛋白质作为配体来合成新型无机化合物。由于生物学领域的一些进展,这种生物合成无机化学成为可能。本综述总结了复杂金属蛋白紧密模型合成方面的进展,随后描述了利用该方法制备在无机化学或生物学中均前所未有的新型化合物的最新进展。重点主要在于从生物学中学到的合成“技巧”,以及获得的新颖结构和见解。讨论了这种生物合成方法的优缺点。

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