Institute of Chemical Research of Catalonia (ICIQ), Av. Països Catalans 16, 43007 Tarragona, Spain.
Chem Soc Rev. 2014 Mar 7;43(5):1734-87. doi: 10.1039/c3cs60037h. Epub 2013 Dec 23.
The design of artificial catalysts able to compete with the catalytic proficiency of enzymes is an intense subject of research. Non-covalent interactions are thought to be involved in several properties of enzymatic catalysis, notably (i) the confinement of the substrates and the active site within a catalytic pocket, (ii) the creation of a hydrophobic pocket in water, (iii) self-replication properties and (iv) allosteric properties. The origins of the enhanced rates and high catalytic selectivities associated with these properties are still a matter of debate. Stabilisation of the transition state and favourable conformations of the active site and the product(s) are probably part of the answer. We present here artificial catalysts and biomacromolecule hybrid catalysts which constitute good models towards the development of truly competitive artificial enzymes.
设计能够与酶的催化效率相媲美的人工催化剂是一个研究热点。非共价相互作用被认为与酶催化的几个性质有关,特别是:(i)将底物和活性位点限制在催化口袋内;(ii)在水中创造疏水性口袋;(iii)自我复制性质;(iv)别构性质。与这些性质相关的增强速率和高催化选择性的起源仍然存在争议。稳定过渡态和有利于活性位点和产物的构象可能是答案的一部分。我们在这里介绍人工催化剂和生物大分子杂化催化剂,它们是开发真正有竞争力的人工酶的良好模型。