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基于模型的单通道驻留时间分布拟合

Model-based fitting of single-channel dwell-time distributions.

作者信息

Qin Feng, Li Ling

机构信息

Department of Physiology and Biophysical Sciences, State University of New York, Buffalo, New York 14214, USA.

出版信息

Biophys J. 2004 Sep;87(3):1657-71. doi: 10.1529/biophysj.103.037531.

Abstract

Single-channel recordings provide unprecedented resolutions on kinetics of conformational changes of ion channels. Several approaches exist for analysis of the data, including the dwell-time histogram fittings and the full maximal-likelihood approaches that fit either the idealized dwell-time sequence or more ambitiously the noisy data directly using hidden Markov modeling. Although the full maximum likelihood approaches are statistically advantageous, they can be time-consuming especially for large datasets and/or complex models. We present here an alternative approach for model-based fitting of one-dimensional and two-dimensional dwell-time histograms. To improve performance, we derived analytical expressions for the derivatives of one-dimensional and two-dimensional dwell-time distribution functions and employed the gradient-based variable metric method for fast search of optimal rate constants in a model. The algorithm also has the ability to allow for a first-order correction for the effects of missed events, global fitting across different experimental conditions, and imposition of typical constraints on rate constants including microscopic reversibility. Numerical examples are presented to illustrate the performance of the algorithm, and comparisons with the full maximum likelihood fitting are discussed.

摘要

单通道记录为离子通道构象变化的动力学提供了前所未有的分辨率。现有几种数据分析方法,包括驻留时间直方图拟合以及完全最大似然方法,后者可通过隐马尔可夫模型拟合理想化的驻留时间序列,或者更具挑战性地直接拟合噪声数据。尽管完全最大似然方法在统计学上具有优势,但它们可能耗时,特别是对于大型数据集和/或复杂模型。我们在此提出一种用于基于模型拟合一维和二维驻留时间直方图的替代方法。为提高性能,我们推导了一维和二维驻留时间分布函数导数的解析表达式,并采用基于梯度的变尺度方法在模型中快速搜索最优速率常数。该算法还能够对漏检事件的影响进行一阶校正,跨不同实验条件进行全局拟合,并对速率常数施加包括微观可逆性在内的典型约束。给出了数值示例以说明算法的性能,并讨论了与完全最大似然拟合的比较。

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