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Inositol trisphosphate receptor and ion channel models based on single-channel data

机译:基于单通道数据的肌醇三磷酸受体和离子通道模型

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The inositol trisphosphate receptor IPR plays an important role in controlling the dynamics of intracellular Ca2+. Single-channel patch-clamp recordings are a typical way to study these receptors as well as other ion channels. Methods for analyzing and using this type of data have been developed to fit Markov models of the receptor. The usual method of parameter fitting is based on maximum-likelihood techniques. However, Bayesian inference and Markov chain Monte Carlo techniques are becoming more popular. We describe the application of the Bayesian methods to real experimental single-channel data in three ion channels: the ryanodine receptor, the K+ channel, and the IPR. One of the main aims of all three studies was that of model selection with different approaches taken. We also discuss the modeling implications for single-channel data that display different levels of channel activity within one recording.
机译:肌醇三磷酸受体IPR在控制细胞内Ca2 +的动力学中起重要作用。单通道膜片钳记录是研究这些受体以及其他离子通道的典型方法。已经开发出用于分析和使用此类数据的方法以适合受体的马尔可夫模型。参数拟合的常用方法是基于最大似然技术。但是,贝叶斯推理和马尔可夫链蒙特卡洛技术变得越来越流行。我们描述了贝叶斯方法在三个离子通道中的实际实验单通道数据的应用:ryanodine受体,K +通道和IPR。这三项研究的主要目的之一是采用不同方法进行模型选择。我们还将讨论单通道数据的建模含义,该数据在一个记录中显示不同级别的通道活动。

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