首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Control of Solvent Dynamics around the B-12-Dependent Ethanolamine Ammonia-Lyase Enzyme in Frozen Aqueous Solution by Using Dimethyl Sulfoxide Modulation of Mesodomain Volume
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Control of Solvent Dynamics around the B-12-Dependent Ethanolamine Ammonia-Lyase Enzyme in Frozen Aqueous Solution by Using Dimethyl Sulfoxide Modulation of Mesodomain Volume

机译:通过使用二甲基磺氧化物调节Mesodomain体积的二甲基亚砜水溶液,对B-12依赖性乙醇胺氨基酶酶周围的溶剂动力学控制

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摘要

The temperature-dependent structure and dynamics of two concentric solvent phases, the protein-associated domain (PAD) and the mesodomain, that surround the ethanolamine ammonia-lyase (EAL) protein from Salmonella typhimurium in frozen polycrystalline aqueous solution are addressed by using electron paramagnetic resonance spectroscopy of the paramagnetic nitroxide spin probe, TEMPOL, over the temperature (T) range 190-265 K. Dimethyl sulfoxide (DMSO), added at 0.5, 2.0, and 4.0% v/v and present at the maximum freeze concentration at T <= 245 K, varies the volume of the interstitial aqueous DMSO mesodomain (V-meso) relative to a fixed PAD volume (V-PAD). The increase in V-meso/V-PAD from 0.8 to 6.0 is quantified by the partitioning of TEMPOL between the two phases. As V-meso/V-PAD is increased, the Arrhenius parameters for activated TEMPOL rotational motion in the mesodomain remain uniform, whereas the parameters for TEMPOL in the PAD show a progressive transformation toward the mesodomain values (higher mobility). An order-disorder transition (ODT) in the PAD is detected by the exclusion of TEMPOL from the PAD into the mesodomain. The ODT T value is systematically lowered by increased V-meso/V-PAD (from 215 to 200 K), and PAD ordering kinks the mesodomain Arrhenius dependence. Thus there is reciprocity in PAD-mesodomain solvent coupling. The results are interpreted as a dominant influence of ice-boundary confinement on the PAD solvent structure and dynamics, which is transmitted through the mesodomain and which decreases with mesodomain volume at increased added DMSO. The systematic tuning of PAD and mesodomain solvent dynamics by the variation of added DMSO is an incisive approach for the resolution of contributions of protein-solvent dynamical coupling to EAL catalysis.
机译:依赖于温度的结构和两个同心溶剂相,蛋白质相关联的域(PAD)和mesodomain的动力学,即围绕乙醇胺丙氨酸解氨酶(EAL)从冷冻的多晶水溶液鼠伤寒沙门氏菌蛋白是通过使用电子顺寻址所述顺磁性氮氧自旋探头的共振光谱法,TEMPOL,在温度(T)范围190-265 K.二甲基亚砜(DMSO)中,在0.5,2.0,并将4.0%v / v和存在于在T最大冷冻浓缩<= 245 K,变化相对于固定的PAD体积(V-PAD)的间隙含水DMSO mesodomain(V-内消旋)的体积。在V-内消旋/ V-PAD从0.8到6.0的增加由两两相之间TEMPOL的分区定量。如V-内消旋/ V-PAD增加,阿仑尼乌斯参数激活TEMPOL旋转运动在保持mesodomain均匀,而在PAD为TEMPOL的参数显示出对mesodomain值(较高迁移率)的渐进变换。在PAD的有序 - 无序转变(ODT)由TEMPOL排除从PAD到mesodomain检测。所述ODT t值被系统通过增加V-内消旋/ V-PAD下降(从215到200 K),和PAD排序扭结的mesodomain阿列纽斯依赖性。因此,存在在PAD-mesodomain溶剂耦合互惠。结果被解释为冰边界限制对PAD溶剂结构和动力学,这是通过发送mesodomain和与在增加的加入DMSO mesodomain体积减小一个支配性的影响。通过加入DMSO的变化PAD和mesodomain溶剂动力学的系统的调谐是用于蛋白质 - 溶剂动力耦合至EAL催化的捐款的分辨率的尖锐的方法。

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