Gonzalez-Fernandez J M, Atta S E
Biophys J. 1982 May;38(2):133-41. doi: 10.1016/S0006-3495(82)84540-2.
Most of the experimental observations on facilitated transport have been done with millipore filters, and all the theoretical studies have assumed homogeneous spatial properties. In striated muscle there exist membranes that may impede the diffusion of the carrier myoglobin. In this paper a theoretical study is undertaken to analyze the transport in the presence of membranes in the diffusion path. For the numerical computations physiologically relevant values of the parameters were chosen. The numerical results indicate that the presence of membranes tends to decrease the facilitation. For the nonlinear chemical kinetics of the reaction of oxygen with the carrier, this decrement also depends on the location of the membranes. At the higher oxygen concentration side of each membrane the flow of combined oxygen is transferred to the flow of dissolved oxygen. The reverse process occurs at the lower concentration side. Jump discontinuities of the concentration of the oxygen-carrier compound at each membrane are associated with these transfers. The decrement of facilitation is due to the cumulative effect of these jump discontinuities.
大多数关于易化运输的实验观察都是使用微孔滤膜进行的,并且所有理论研究都假定空间特性是均匀的。在横纹肌中存在可能阻碍载体肌红蛋白扩散的膜。本文进行了一项理论研究,以分析扩散路径中存在膜时的运输情况。对于数值计算,选择了生理相关的参数值。数值结果表明,膜的存在倾向于降低易化作用。对于氧气与载体反应的非线性化学动力学,这种降低还取决于膜的位置。在每个膜的较高氧气浓度一侧,结合氧的流动转变为溶解氧的流动。相反的过程发生在较低浓度一侧。每个膜处氧载体化合物浓度的跳跃间断与这些转变相关。易化作用的降低是由于这些跳跃间断的累积效应。