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Reaction Rate of Small Diffusing Molecules on a Cylindrical Membrane

机译:小扩散分子在圆柱膜上的反应速率

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Biomembranes consist of a lipid bi-layer into which proteins are embedded to fulfill numerous tasks in localized regions of the membrane. Often, the proteins have to reach these regions by simple diffusion. Motivated by the observation that IP3 receptor channels (IP3R) form clusters on the surface of the endoplasmic reticulum (ER) during ATP-induced calcium release, the reaction rate of small diffusing molecules on a cylindrical membrane is calculated based on the Smoluchowski approach. In this way, the cylindrical topology of the tubular ER is explicitly taken into account. The problem can be reduced to the solution of the diffusion equation on a finite cylindrical surface containing a small absorbing hole. The solution is constructed by matching appropriate ‘inner’ and ‘outer’ asymptotic expansions. The asymptotic results are compared with those from numerical simulations and excellent agreement is obtained. For realistic parameter sets, we find reaction rates in the range of experimentally measured clustering rates of IP3R. This supports the idea that clusters are formed by a purely diffusion limited process.
机译:生物膜由脂质双层组成,蛋白质被嵌入其中以完成膜局部区域中的许多任务。通常,蛋白质必须通过简单的扩散才能到达这些区域。观察到IP3 受体通道(IP3 R)在ATP诱导的钙释放过程中在内质网(ER)的表面上形成簇,这是由于小扩散分子在圆柱膜上的反应速率是根据Smoluchowski方法计算的。这样,明确考虑了管状ER的圆柱形拓扑。可以将问题简化为在包含小吸收孔的有限圆柱表面上的扩散方程的解。该解决方案是通过匹配适当的“内部”和“外部”渐近展开来构造的。将渐近结果与数值模拟的结果进行了比较,并获得了极好的一致性。对于实际的参数集,我们发现反应速率在IP3 R的实验测量聚类速率范围内。这支持了通过完全扩散受限的过程形成簇的想法。

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