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Diffusion-limited binding to a site on the wall of a membrane channel

机译:扩散受限的结合到膜通道壁上的位点

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The authors develop a theory of diffusion-controlled reactions with a site located on the wall of a cylindrical membrane channel that connects two reservoirs containing diffusing particles which are trapped by the site at the first contact.An expression for the Laplace transform of the rate coefficient,k(t),is derived assuming that the size of the site is small compared to the channel radius.The expression is used to find the stationary value of the rate coefficient,k(infinity),as a function of the length and radius of the channel,the radius of the site,and its position inside the channel (distances from the two ends of the channel) as well as the particle diffusion constants in the bulk and in the channel.Their derivation is based on the one-dimensional description of the particle motion in the channel,which is generalized to include binding to the site into consideration.The validity of the approximate one-dimensional description of diffusion and binding was checked by three-dimensional Brownian dynamics simulations.They found that the one-dimensional description works reasonably well when the size of the site does not exceed 0.2 of the channel radius.
机译:作者开发了一种扩散控制反应的理论,该反应的位置位于圆柱形膜通道的壁上,该通道连接两个包含扩散颗粒的储层,这些储集层在第一次接触时被该位点捕获。速率系数的Laplace变换表达式假设站点的大小比通道半径小,则得出k(t)。该表达式用于查找速率系数k(无穷大)的固定值,该值是长度和半径的函数通道的半径,位置的半径及其在通道内的位置(与通道两端的距离)以及粒子在通道中和通道中的扩散常数。它们的推导基于一维通道中粒子运动的描述,一般考虑到与位点的结合。扩散和结合的近似一维描述的有效性通过三维检验最终的布朗动力学模拟。他们发现,当站点的大小不超过通道半径的0.2时,一维描述的效果相当好。

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