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On the possible methods for the mathematical description of the ball and chain model of ion channel inactivation

机译:关于离子通道失活球链模型数学描述的可能方法

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Ion channels are large transmembrane proteins that are able to conduct small inorganic ions. They are characterized by high selectivity and the ability to gate, i.e. to modify their conductance in response to different stimuli. One of the types of gating follows the ball and chain model, according to which a part of the channel’s protein forms a ball connected with the intracellular side of the channel by a polypeptide chain. The ball is able to modify the conductance of the channel by properly binding to and plugging the channel pore. In this study, the polypeptide ball is treated as a Brownian particle, the movements of which are limited by the length of the chain. The probability density of the ball’s position is resolved by different diffusional operators — parabolic (including the case with drift), hyperbolic, and fractional. We show how those different approaches shed light on different aspects of the movement. We also comment on some features of the survival probabilities (which are ready to be compared with electrophysiological measurements) for issues based on the above operators.
机译:离子通道是大型的跨膜蛋白,能够传导小的无机离子。它们的特征在于高选择性和门控能力,即响应不同的刺激而改变其电导的能力。一种门控类型遵循球和链模型,根据该模型,通道的一部分蛋白质形成一个通过多肽链与通道的细胞内侧相连的球。该球能够通过适当地结合并堵塞通道孔来改变通道的电导率。在这项研究中,多肽球被视为布朗粒子,其运动受到链长的限制。球位置的概率密度由不同的扩散算子解决-抛物线形(包括带漂移的情况),双曲线和小数。我们将展示这些不同的方法如何阐明运动的不同方面。我们还评论了基于上述算子的生存概率的某些特征(准备与电生理测量进行比较)。

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