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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Detection of Subtle Dynamical Changes Induced by Unresolved 'Conformational Coordinates' in Single-Molecule Trajectories via Goodness-of-Fit Tests
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Detection of Subtle Dynamical Changes Induced by Unresolved 'Conformational Coordinates' in Single-Molecule Trajectories via Goodness-of-Fit Tests

机译:通过拟合优度检验检测单分子轨道中未解析的“构象坐标”引起的细微动态变化

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摘要

Single-molecule experiments are allowing researchers to track the evolution of a few order parameters characterizing complex biomolecules. At fine temporal resolution, artifacts of unresolved degrees of freedom, for example, those induced by collective molecular motion, often influence the dynamics. Reliably detecting subtle changes in dynamics at the nanoscale can be difficult due to the inherent stochasticity, but such changes can have relevance to understanding complex enzyme kinetics. Surrogate models can be used to summarize the information content in single-molecule time series (containing fluctuations occurring over multiple time scales). The focus in this article is on detecting slow time scale changes through the use of the surrogates. The conditional density, associated with the surrogates, allows one to formulate quantitative hypothesis tests which can detect the influence of unresolved coordinates in cases where the dynamics are modulated subtly. The relevance of quantitative (and appropriate) testing methods to analyze single-molecule time series is discussed and demonstrated. A brief discussion on some merits of using frequentist (versus Bayesian) time series methods to analyze single-molecule data is also presented. Idealized simulations mimicking features relevant to some enzyme systems where an "unresolved conformational coordinate" slowly evolves (1) with inertia and (2) diffusively are studied in the nonstationary (nonergodic) setting; however, the findings are also relevant to experimentally measured time series and stationary signals.
机译:单分子实验使研究人员能够追踪表征复杂生物分子的几个有序参数的演变。在良好的时间分辨率下,自由度无法解决的伪影(例如,由集体分子运动引起的伪影)通常会影响动力学。由于固有的随机性,很难在纳米级可靠地检测动力学的细微变化,但是这种变化可能与理解复杂的酶动力学有关。替代模型可用于总结单分子时间序列中的信息内容(包含在多个时间范围内发生的波动)。本文的重点是通过使用代理来检测慢的时间尺度变化。与代理人相关的条件密度使人们可以制定定量的假设检验,该检验可以检测对动力学进行巧妙调制的情况下未解析坐标的影响。讨论并证明了定量(和适当的)测试方法与分析单分子时间序列的相关性。还简要讨论了使用频繁(相对于贝叶斯)时间序列方法分析单分子数据的优点。模仿与某些酶系统相关的特征的理想化模拟,其中在非平稳(非遍历)环境中研究了“未解析的构象坐标”(1)随着惯性缓慢发展(2)扩散。然而,这些发现也与实验测量的时间序列和平稳信号有关。

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