Beaudoin A G, Mizukami H
Biochim Biophys Acta. 1978 Jan 25;532(1):41-7. doi: 10.1016/0005-2795(78)90445-2.
Correlation times for the tumbling motion of the spin probe 2,2,6,6,-tetramethyl piperidone-N-oxyl (Tempone) were obtained in the presence of different concentrations of oxyhemoglobin A, oxyhemoglobin S, and deoxyhemoglobin S and compared to the viscosity of non-gelling hemoglobin solutions. Reorientational motion (or tumbling) of Tempone in gelled solutions of deoxyhemoglobin S is as great as that in non-gelled hemoglobins of the same total concentration. It is concluded that the gel does not exclusively partition Tempone into an aqueous phase of lower solute concentration after gel formation. The gel at room temperature is a highly mobile and dynamic structure on the microscopic level.
在存在不同浓度的氧合血红蛋白A、氧合血红蛋白S和脱氧血红蛋白S的情况下,获得了自旋探针2,2,6,6 - 四甲基哌啶-N-氧基(Tempone)翻滚运动的相关时间,并将其与非凝胶化血红蛋白溶液的粘度进行了比较。Tempone在脱氧血红蛋白S凝胶溶液中的重取向运动(或翻滚)与相同总浓度的非凝胶化血红蛋白中的运动一样剧烈。得出的结论是,凝胶形成后,凝胶不会仅将Tempone分配到溶质浓度较低的水相中。室温下的凝胶在微观层面上是一种高度可移动和动态的结构。