Sims P J, Lauf P K
Proc Natl Acad Sci U S A. 1978 Nov;75(11):5669-73. doi: 10.1073/pnas.75.11.5669.
Resealed erythrocyte ghosts have been used to define the kinetics of tracer exchange across the membrane-bound terminal complex of the complement cascade (C5b-9). Under steady-state conditions and at net chemical equilibrium, C5b-9 ghosts showed no significant lysis above control levels as measured by hemoglobin efflux. In 1 mM sucrose at 37 degrees C, [14C]sucrose isotopic exchange diffusion into C5b-9 ghosts occurred at 4.8 (+/- 0.5, SEM) X 10(-20) mol sec-1 per functional lesion, equivalent to an apparent permeability coefficient of 4.8 X 10(-14) cm3 sec-1 for the single C5b-9 lesion. No significant uptake of [14C]sucrose above control levels was observed in C5b67 ghosts. The apparent rate of tracer permeation through the complement lesion is one to two orders of magnitude slower than predicted by a model of a transmembrane channel of dimensions permitting free diffusion of sucrose. The data support earlier assertions from this laboratory that diffusion of small molecules across the complement lesion in biological membranes is significantly restricted.
重新封闭的红细胞血影已被用于确定示踪剂穿过补体级联反应的膜结合末端复合物(C5b-9)的动力学。在稳态条件下和净化学平衡时,通过血红蛋白流出测量,C5b-9血影在对照水平以上未显示出明显的裂解。在37℃的1 mM蔗糖中,[14C]蔗糖的同位素交换扩散进入C5b-9血影的速率为每个功能性损伤4.8(±0.5,SEM)×10-20 mol s-1,相当于单个C5b-9损伤的表观渗透系数为4.8×10-14 cm3 s-1。在C5b67血影中未观察到[14C]蔗糖在对照水平以上的显著摄取。示踪剂通过补体损伤的表观速率比由允许蔗糖自由扩散的跨膜通道模型预测的速率慢一到两个数量级。这些数据支持了该实验室早期的论断,即生物膜中补体损伤处小分子的扩散受到显著限制。