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Small-angle Neutron Scattering Study Of Structural Evolution Of Different Phases In Protein Solution

机译:蛋白质溶液中不同相结构演化的小角中子散射研究

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Small-angle neutron scattering (SANS) has been used to study the structural evolution of different phases in protein solution leading to crystallization, denaturation and gelation. The protein solution under crystallization mostly consists of monomers and dimers, and higher-mers are not observed as they are perhaps formed in very small numbers. The onset and the rate of crystallization strongly depend on the salt concentration. Protein denaturation on addition of surfactant occurs due to the formation of micelle-like clusters along the unfolded polypeptide chains of the protein. The structure of such protein-surfactant complex is found to be independent of the size of the micelles in their pure surfactant solutions. The structure of temperature-induced protein gels shows a fractal structure. Rheology of these gels shows a strong dependence on varying pH or protein concentration, whereas the structure of such gels is found to be similar.
机译:小角中子散射(SANS)已用于研究蛋白质溶液中导致结晶,变性和凝胶化的不同相的结构演变。处于结晶状态的蛋白质溶液主要由单体和二聚体组成,未观察到较高的单体,因为它们可能以极少量形成。结晶的开始和速率很大程度上取决于盐的浓度。添加表面活性剂时蛋白质变性是由于沿着蛋白质的未折叠多肽链形成胶束状簇而引起的。发现这种蛋白质-表面活性剂复合物的结构与胶束在其纯表面活性剂溶液中的大小无关。温度诱导的蛋白质凝胶的结构显示出分形结构。这些凝胶的流变性显示出对变化的pH或蛋白质浓度的强烈依赖性,而发现这种凝胶的结构是相似的。

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