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Macromolecular crowding effect upon in vitro enzyme kinetics: mixed activation-diffusion control of the oxidation of NADH by pyruvate catalyzed by lactate dehydrogenase

机译:大分子拥挤对体外酶动力学的影响:乳酸脱氢酶催化丙酮酸对NADH的氧化的混合活化-扩散控制

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摘要

Enzyme kinetics studies have been usually designed as dilute solution experiments, which differ substantially from in vivo conditions. However, cell cytosol is crowded with a high concentration of molecules having different shapes and sizes. The consequences of such crowding in enzymatic reactions remain unclear. The aim of the present study is to understand the effect of macromolecular crowding produced by Dextran of different sizes and at diverse concentrations in the well-known reaction of oxidation of NADH by pyruvate catalyzed by L-Lactate Dehydrogenase (LDH). Our results indicate that the reaction rate is determined by both the occupied volume and the relative size of Dextran obstacles in respect to the enzyme present in the reaction. Moreover, we analyzed the influence of macromolecular crowding on the Michaelis-Menten constants, v_max and K_m. The obtained results show that only high concentrations and large sizes of Dextran reduce both constants suggesting a mixed activation-diffusion control of this enzymatic reaction due to the Dextran crowding action. From our knowledge, this is the first experimental study that depicts mixed activation-diffusion control in an enzymatic reaction due to the effect of crowding.
机译:通常将酶动力学研究设计为稀溶液实验,这与体内条件大不相同。然而,细胞溶质中挤满了具有不同形状和大小的高浓度分子。这种酶反应拥挤的后果尚不清楚。本研究的目的是了解在L-乳酸脱氢酶(LDH)催化下丙酮酸对NADH的氧化反应中,不同大小和不同浓度的右旋糖酐产生的大分子拥挤的影响。我们的结果表明,反应速率取决于葡聚糖障碍物相对于反应中存在的酶的占据体积和相对大小。此外,我们分析了大分子拥挤对Michaelis-Menten常数v_max和K_m的影响。获得的结果表明,仅高浓度和大尺寸的葡聚糖会降低两个常数,这表明由于葡聚糖拥挤作用而对该酶反应的混合活化-扩散控制。据我们所知,这是第一个描述由于拥挤效应而在酶促反应中进行混合激活-扩散控制的实验研究。

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