首页> 外文期刊>Journal of Molecular Structure. Theochem: Applications of Theoretical Chemistry to Organic, Inorganic and Biological Problems >Transition structures in vacuo and the theory of enzyme catalysis. Rubisco's catalytic mechanism: a paradigmatic case?
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Transition structures in vacuo and the theory of enzyme catalysis. Rubisco's catalytic mechanism: a paradigmatic case?

机译:真空中的过渡结构和酶催化理论。 Rubisco的催化机制:一个典型案例?

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The molecular mechanism of Rubisco is discussed from the theoretical perspective provided by saddle points of index 1 (SPi-1) for the enolization, carboxylation and oxygenation of Rubisco's substrate, D-ribulose-l,5-bisphosphat'e, by using 3,4-dihydroxy-2-pentanone as substrate model and ab initio SCF MO at a 3-21G basis set level of theory. Intramolecular hydrogen transfer is shown to be a possible pathway for enolization. The geometric conformation of the in vacuo carboxylation transition structure is found to be superimposable on the transition state analogue bound to Rubisco. For oxygenation, the lowest energy SPi-1 has a triplet spin electronic structure and the carbon fragment has a large structural overlap with the C-fragment of the enolization and carboxylation SPi-1 structures. An explanation for the hifunctionality of the Rubisco enzyme arises from these structural similarities: once the catalytic process begins and the transition structure for the enolization step is reached, the system can catalyse both the carboxylation and the oxygena-tion processes with very little structural changes of the substrate moiety. Thus, depending on the gas molecule that enters into the active site; CO2 or O2, Rubisco will catalyse carboxilation or oxygenation of the substrate, respectively. The "inevitability" hypothesis, for the oxygenation reaction is given theoretical support.
机译:从指数1的鞍点(SPi-1)为Rubisco底物D-核糖-1,5-双磷酸酯的烯键化,羧化和氧合提供的理论角度讨论了Rubisco的分子机理,使用3,以4-二羟基-2-戊酮为底物模型,并在3-21G的基础水平上从头开始进行SCF MO。分子内氢转移被证明是烯醇化的可能途径。发现在真空中羧化过渡结构的几何构象在与Rubisco结合的过渡态类似物上是可叠加的。对于氧合,最低能量的SPi-1具有三重态自旋电子结构,碳片段与烯醇化和羧化SPi-1结构的C片段具有较大的结构重叠。 Rubisco酶的高功能性的解释来自于这些结构相似性:一旦催化过程开始并且达到烯醇化步骤的过渡结构,该系统就可以在几乎不发生结构变化的情况下催化羧化和氧合过程。底物部分。因此,取决于进入活性位点的气体分子; Rubisco会通过CO2或O2分别催化底物的羧化或氧合。氧化反应的“必然性”假说得到了理论支持。

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