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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Unusual origins of isotope effects in enzyme-catalysed reactions
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Unusual origins of isotope effects in enzyme-catalysed reactions

机译:酶催化反应中同位素效应的异常起源

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摘要

High hydrostatic Pressure is a neglected tool for probing the origins of isotope effects. In chemical reactions, normal primary deuterium isotope effects (DIEs) arising solely from differences in zero point energies are unaffected by pressure; but some anomalous isotope effects in which hydrogen tunnelling is suspected are partially suppressed. In some enzymatic reactions, high pressure completely suppresses the DIE. We have now measured the effects of high pressure on the parallel C-13 heavy atom isotope effect of yeast alcohol dehydrogenase and found that it is also suppressed by high pressure and, similarly, suppressed in its entirety. Moreover, the volume changes associated with the suppression of both deuterium and heavy atom isotope effects are virtually identical. The equivalent decrease in activation volumes for hydride transfer, when one mass unit is added to the carbon end of a scissile C-H bond as when one mass unit is added to the hydrogen end, suggests a common origin. Given that carbon is highly unlikely to undergo tunnelling, it follows that hydrogen is not doing so either. The origin of these isotope effects must lie elsewhere. We offer protein domain motions as a possibility.
机译:高静水压是探测同位素效应起源的一种被忽略的工具。在化学反应中,仅由零点能量差异引起的正常初级氘同位素效应(DIE)不受压力的影响;但是怀疑其中一些氢同位素隧穿的异常同位素效应被部分抑制了。在某些酶促反应中,高压完全抑制了DIE。现在,我们已经测量了高压对酵母醇脱氢酶平行的C-13重原子同位素作用的影响,发现高压也可以抑制它,并且同样可以整体抑制它。而且,与抑制氘和重原子同位素效应有关的体积变化实际上是相同的。当将一个质量单位添加到易裂的C-H键的碳端时,当将一个质量单位添加到氢端时,氢化物转移的活化体积的当量降低,表明了一个共同的起源。考虑到碳极不可能发生隧穿,因此氢也不会这样做。这些同位素效应的起源必须位于其他地方。我们提供蛋白质结构域运动作为一种可能性。

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