首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Shape-Dependent Macromolecular Crowding on the Thermodynamics and Microsecond Conformational Dynamics of Protein Unfolding Revealed at the Single-Molecule Level
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Shape-Dependent Macromolecular Crowding on the Thermodynamics and Microsecond Conformational Dynamics of Protein Unfolding Revealed at the Single-Molecule Level

机译:在单分子水平下,蛋白质展开的蛋白质展开的热力学和微秒挤出的形状依赖性大分子挤在一起

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One of the main differences in the intercellular environment compared to the laboratory condition is the presence of macromolecular crowders of various compositions, sizes, and shapes. In this article, we have contemplated a systematic shape dependency of macromolecular crowders on the thermodynamics and microsecond conformational fluctuation dynamics of protein unfolding by taking human serum albumin (HSA) as the model protein and similar-sized crowders, namely, dextran-40, ficoll-70, and PEG-35 as macromolecular crowders of different shapes, to mimic the cell environment. We observed that dextran-40 and ficoll-70 counteract the thermal denaturation and PEG-35 assists it. A complete thermodynamic analysis suggests that the stabilization by dextran-40 and ficoll-70 occurs mainly through stabilizing entropic effect, which is somewhat counteracted by the destabilizing enthalpic effect, in line with what is expected from the traditional interpretation of excluded volume and soft interaction. Surprisingly, the destabilizing effect of PEG-35 is not through unfavorable interaction but through a destabilizing entropic effect, which is opposite to the excluded volume prediction. Our speculation is that the modulation of the associated water structure due to crowder-induced distortion plays a crucial role in modulating the entropic component. Moreover, while a two-state model can approximate the overall thermal denaturation of HSA in the absence and presence of various crowders, the thermal denaturation profile of domain III of HSA involves a distinct intermediate state. The active-site dynamics of HSA are altered significantly in the presence of all the three differently shaped crowders used in the study. Rod-shaped dextran-40 and spherical ficoll-70 hinder the microsecond conformational dynamics of domain III of HSA in all states except the intermediate state. Mesh-like PEG-35 in addition to hindering the microsecond conformational dynamics shifts the intermediate state from 40 to 30 degrees C. Overall, our results provide new insight into deciphering the mechanism of crowder-induced changes in protein. Through our interpretation, we not only explain the unfavorable entropic contribution but also provide a physical basis to explain the entropy-enthalpy compensation.
机译:之一在相对于实验室条件细胞间环境中的主要差别是各种组成,尺寸,和形状的大分子沟渠扫污机的存在。在本文中,我们已经考虑在热力学和大分子沟渠扫污机的一个系统的形状依赖微秒蛋白的构象变动动力学通过采取人血清白蛋白(HSA)作为模型蛋白和类似大小的沟渠扫污机,即葡聚糖40,聚蔗糖展开-70和PEG-35的不同形状的大分子沟渠扫污机,以模拟细胞环境。我们观察到,葡聚糖40和聚蔗糖-70抵消热变性和PEG-35有助于它。一个完整的热力学分析表明,稳定化的葡聚糖-40和聚蔗糖-70主要发生通过稳定熵效应,这在一定程度上由所述去稳定化焓效果与什么是从排除体积和软相互作用的传统解释预期抵消,在线路。令人惊讶地,PEG-35的去稳定化效果不通过不利相互作用,而是通过一个不稳定熵效应,这是相反的排除体积预测。我们推测是相关的水的结构由于克劳德引起的失真的调制在调节的熵成分的至关重要的作用。此外,虽然双态模型可以近似在不存在和各种沟渠扫污机的存在HSA的总体热变性,HSA的结构域III的热变性曲线涉及不同的中间状态。 HSA的活性位点动力学在研究中使用的所有三种不同形状的沟渠扫污存在显著改变。棒状葡聚糖-40和球形聚蔗糖-70阻碍微秒的构象在所有状态HSA的结构域III的动力学除了中间状态。除了从40至30摄氏度总体阻碍微秒构象动力学移位中间状态网状PEG-35,我们的结果提供新的见解解密的蛋白质克劳德诱导的变化的机构。通过我们的解释,我们不仅解释了不利的熵的贡献,但也提供了物理基础来解释熵焓补偿。

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