Sullivan David C, Aynechi Tiba, Voelz Vincent A, Kuntz Irwin D
Department of Pharmaceutical Chemistry, University of California, San Francisco, California 94143-2240, USA.
Biophys J. 2003 Jul;85(1):174-90. doi: 10.1016/S0006-3495(03)74464-6.
For a completely enumerated set of conformers of a macromolecule or for exhaustive lattice walks of model polymers it is straightforward to use Shannon information theory to deduce the information content of the ensemble. It is also practicable to develop numerical measures of the information content of sets of exact distance constraints applied to specific conformational ensembles. We examine the effects of experimental uncertainties by considering "noisy" constraints. The introduction of noise requires additional assumptions about noise distribution and conformational clustering protocols that make the problem of measuring information content more complex. We make use of a standard concept in communication theory, the "noise sphere," to link uncertainty in measurements to information loss. Most of our numerical results are derived from two-dimensional lattice ensembles. Expressing results in terms of information per degree of freedom removes almost all of the chain length dependence. We also explore off-lattice polyalanine chains that yield surprisingly similar results.
对于大分子构象异构体的完全枚举集或模型聚合物的穷举晶格游走,使用香农信息论来推导系综的信息含量很简单。针对应用于特定构象系综的精确距离约束集开发信息含量的数值度量也是可行的。我们通过考虑“有噪声”的约束来研究实验不确定性的影响。噪声的引入需要关于噪声分布和构象聚类协议的额外假设,这使得测量信息含量的问题更加复杂。我们利用通信理论中的一个标准概念“噪声球”,将测量中的不确定性与信息损失联系起来。我们的大多数数值结果来自二维晶格系综。以每自由度的信息来表示结果几乎消除了所有链长依赖性。我们还探索了非晶格聚丙氨酸链,其产生了惊人相似的结果。