Rich G T, Sha'afi R I, Barton T C, Solomon A K
J Gen Physiol. 1967 Nov;50(10):2391-405. doi: 10.1085/jgp.50.10.2391.
Water permeability coefficients of dog, cat, and beef red cell membranes have been measured under an osmotic pressure gradient. The measurements employed a rapid reaction stop flow apparatus with which cell shrinking was measured under a relative osmotic pressure gradient of 1.25 to 1.64 times the isosmolar concentration. For the dog red cell the osmotic permeability coefficient is 0.36 cm(4)/(sec, osmol). The water permeability coefficient for the dog red cell under a diffusion gradient was also measured (rate constant = 0.10/msec). The ratio between the two permeabilities was used to calculate an equivalent pore radius of 5.9 A. This value agrees welt with an equivalent pore radius of 6.2 A obtained from reflection coefficients of nonelectrolyte water-soluble molecules, and is consistent with data on the permeability of the dog red cell membrane to glucose. These data provide evidence supporting the existence of equivalent pores in single biological membranes.
已在渗透压梯度下测量了狗、猫和牛肉红细胞膜的水渗透系数。测量采用了一种快速反应停流装置,利用该装置在等渗浓度的1.25至1.64倍的相对渗透压梯度下测量细胞收缩情况。对于狗红细胞,其渗透渗透系数为0.36 cm⁴/(秒,渗透压)。还测量了狗红细胞在扩散梯度下的水渗透系数(速率常数 = 0.10/毫秒)。用这两种渗透率的比值计算出等效孔径为5.9埃。该值与从非电解质水溶性分子的反射系数得到的等效孔径6.2埃非常吻合,并且与狗红细胞膜对葡萄糖的渗透率数据一致。这些数据为支持单个生物膜中存在等效孔提供了证据。