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首页> 外文期刊>European Biophysics Journal >Quantitative characterization of temperature-independent polymer-polymer interaction and temperature-dependent protein-protein and protein-polymer interactions in concentrated polymer solutions
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Quantitative characterization of temperature-independent polymer-polymer interaction and temperature-dependent protein-protein and protein-polymer interactions in concentrated polymer solutions

机译:浓缩聚合物溶液中温度无关聚合物 - 聚合物相互作用和温度依赖性蛋白质 - 蛋白质 - 聚合物相互作用的定量表征

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To study the effect of non-specific interactions arising from proteins being in a crowded environment on physiological processes, the self-interaction of concentrated Dextran T70 and Ficoll 70 and the interactions between a dilute protein and these polymeric macromolecules were quantified using non-ideal tracer sedimentation equilibrium. Sedimentation equilibria of each polymer were measured between 5 and 37 degrees C, and sedimentation equilibria of 2mgcm(-3) superoxide dismutase (SOD) in 0-0.1gcm(-3) of each polymer was also measured. Results were analyzed using a model-free thermodynamic virial expression of activity coefficients in terms of the concentration of polymer and a structural model using a statistical thermodynamics approximation. The equilibrium gradients of each of the polymers suggest repulsive interaction, which is independent of temperature. However, the net repulsive interaction between superoxide dismutase (SOD) species and the polymers is dependent on temperature. The ratio of the solvation energy of SOD in Dextran T70 to that in Ficoll 70, ln(SOD)(Dex)/ln(SOD)(Fic) at the same w/v concentration was about 1.8 at 37 degrees C, 1.6 at the intermediate temperature, and ranges from 1.2 to 1.6 at 5 degrees C over the entire concentration range. The enthalpy and entropy of interaction of SOD with dilute Dextran T70 are - 14kJmol(-1) and - 5.6JK(-1) mol(-1), respectively. For SOD in dilute Ficoll 70, the enthalpy and entropy are - 8.1kJmol(-1) and 12.9JK(-1)mol(-1), respectively. Thus, Dextran T70 contributes more to the attractive protein-polymer interaction and to self-association of protein than Ficoll 70 and reasons for this are discussed.
机译:为了研究蛋白质中产生的非特异性相互作用的影响在生理过程中的拥挤环境中,使用非理想示踪剂量化浓葡聚糖T70和Ficoll70的自相互作用以及稀释蛋白质与这些聚合物大分子之间的相互作用沉降平衡。在5至37℃之间测量每种聚合物的沉降平衡,并且还测量每种聚合物0-0.1gCM(-3)中的2mgcm(-3)超氧化物歧化酶(SOD)的沉降平衡。在使用统计热力学近似的聚合物浓度和结构模型的浓度方面,使用活性系数的无模型热力学体育表达分析结果。每个聚合物的平衡梯度表明排斥相互作用,其与温度无关。然而,超氧化物歧化酶(SOD)物种和聚合物之间的净排斥相互作用依赖于温度。在相同的w / v浓度下,SOD在葡聚糖T70中SOD在甲状腺T70中的溶剂化能量与甲状腺70,LN(SOD)(DEX)/ LN(SOD)(FIC)的比率为约1.8,在37℃下为1.6中间温度,在整个浓度范围内以5摄氏度为1.2至1.6。用稀葡聚糖T70的SOD相互作用的焓和熵分别为-14kJmol(-1)和-5.6JK(-1)摩尔(-1)。对于稀释的Ficoll 70中的SOD,焓和熵分别为-8.1kJmol(-1)和12.9Jk(-1)摩尔(-1)。因此,葡聚糖T70更多地有助于蛋白质 - 聚合物相互作用和蛋白质的自相关,而不是Ficoll 70,并且讨论了这一点的原因。

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