Stokke B T, Mikkelsen A, Elgsaeter A
Biochim Biophys Acta. 1985 Jun 11;816(1):102-10. doi: 10.1016/0005-2736(85)90398-0.
We have determined experimentally the temperature dependence of human erythrocyte spectrin dimer intrinsic viscosity at shear rates 8-12 s-1 using a Cartesian diver viscometer. We find that the intrinsic viscosity decreases from 43 +/- 3 ml/g at 4 degrees C to 34 +/- 3 ml/g when the temperature is increased to 38 degrees C. Our results show that spectrin dimers are flexible worm-like macromolecules with persistence length about 20 nm and that the mean square end-to-end distance for this worm-like macromolecules decreases when the temperature is increased. This implies that the spectrin dimer internal energy decreases when the end-to-end distance is increased and that the free energy increase associated with making the end-to-end distance longer than the equilibrium value for the free molecules is of entropic origin. The temperature dependence of the erythrocyte membrane shear modulus reported previously in the literature therefore appears mainly to be due to temperature dependent alterations in the membrane skeleton topology.
我们使用笛卡儿潜水粘度计,通过实验测定了在剪切速率为8 - 12 s⁻¹时人红细胞血影蛋白二聚体的特性粘度与温度的关系。我们发现,当温度从4℃升高到38℃时,特性粘度从43±3 ml/g降至34±3 ml/g。我们的结果表明,血影蛋白二聚体是具有约20 nm持久长度的柔性蠕虫状大分子,并且当温度升高时,这种蠕虫状大分子的均方末端距减小。这意味着当末端距增加时,血影蛋白二聚体的内能降低,并且使末端距比自由分子的平衡值更长所伴随的自由能增加是由熵引起的。因此,文献中先前报道的红细胞膜剪切模量与温度的关系似乎主要是由于膜骨架拓扑结构随温度的变化所致。