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机械敏感离子通道门控的隐马尔可夫分析

Hidden Markov analysis of mechanosensitive ion channel gating.

作者信息

Khan R Nazim, Martinac Boris, Madsen Barry W, Milne Robin K, Yeo Geoffrey F, Edeson Robert O

机构信息

School of Mathematics and Statistics, The University of Western Australia, Crawley 6009, Australia.

出版信息

Math Biosci. 2005 Feb;193(2):139-58. doi: 10.1016/j.mbs.2004.07.007.

Abstract

Patch clamp data from the large conductance mechanosensitive channel (MscL) in E. coli was studied with the aim of developing a strategy for statistical analysis based on hidden Markov models (HMMs) and determining the number of conductance levels of the channel, together with mean current, mean dwell time and equilibrium probability of occupancy for each level. The models incorporated state-dependent white noise and moving average adjustment for filtering, with maximum likelihood parameter estimates obtained using an EM (expectation-maximisation) based iteration. Adjustment for filtering was included as it could be expected that the electronic filter used in recording would have a major effect on obviously brief intermediate conductance level sojourns. Preliminary data analysis revealed that the brevity of intermediate level sojourns caused difficulties in assignment of data points to levels as a result of over-estimation of noise variances. When reasonable constraints were placed on these variances using the better determined noise variances for the closed and fully open levels, idealisation anomalies were eliminated. Nevertheless, simulations suggested that mean sojourn times for the intermediate levels were still considerably over-estimated, and that recording bandwidth was a major limitation; improved results were obtained with higher bandwidth data (10 kHz sampled at 25 kHz). The simplest model consistent with these data had four open conductance levels, intermediate levels being approximately 20%, 51% and 74% of fully open. The mean lifetime at the fully open level was about 1 ms; estimates for the three intermediate levels were 54-92 micros, probably still over-estimates.

摘要

研究了来自大肠杆菌中大电导机械敏感通道(MscL)的膜片钳数据,目的是制定一种基于隐马尔可夫模型(HMM)的统计分析策略,并确定通道的电导水平数量,以及每个水平的平均电流、平均停留时间和占据平衡概率。这些模型纳入了状态依赖的白噪声和用于滤波的移动平均调整,使用基于期望最大化(EM)的迭代获得最大似然参数估计。纳入滤波调整是因为可以预期记录中使用的电子滤波器会对明显短暂的中间电导水平停留产生重大影响。初步数据分析表明,由于噪声方差估计过高,中间水平停留的短暂性导致难以将数据点分配到各个水平。当使用更好确定的关闭和完全开放水平的噪声方差对这些方差施加合理约束时,理想化异常被消除。然而,模拟表明中间水平的平均停留时间仍然被大大高估,并且记录带宽是一个主要限制;使用更高带宽的数据(以25 kHz采样的10 kHz)获得了更好的结果。与这些数据一致的最简单模型有四个开放电导水平,中间水平约为完全开放水平的20%、51%和74%。完全开放水平的平均寿命约为1毫秒;三个中间水平的估计值为54 - 92微秒,可能仍然是高估。

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