分子识别作为信息通道:构象变化的作用

Y. Savir, Tsvi Tlusty
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引用次数: 6

摘要

分子识别是生物系统信息处理的关键,它发生在拥挤嘈杂的生化环境中,需要在各种相似竞争分子的背景下识别特定目标。我们认为分子识别是一种通过噪声信道的信息传输,并利用这种类比来深入了解最优或最适合的分子识别器。我们关注分子的最佳结构特性,如柔韧性和构象。我们表明,结合时的构象变化,经常发生在分子识别过程中,可以优化识别器的检测性能。因此,我们建议一个通用的设计原则,称为“构象校对”,其中变形增强检测。我们评估了分子识别器的最优灵活性,它类似于决策单元中的随机性。在某些情况下,灵活的识别器,即随机决策单元,比刚性的、确定性的识别器表现得更好。作为一个生物学的例子,我们讨论同源重组过程中的构象变化,这是两个DNA链之间的遗传交换过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular recognition as an information channel: The role of conformational changes
Molecular recognition, which is essential in processing information in biological systems, takes place in a crowded noisy biochemical environment and requires the recognition of a specific target within a background of various similar competing molecules. We consider molecular recognition as a transmission of information via a noisy channel and use this analogy to gain insights on the optimal, or fittest, molecular recognizer. We focus on the optimal structural properties of the molecules such as flexibility and conformation. We show that conformational changes upon binding, which often occur during molecular recognition, may optimize the detection performance of the recognizer. We thus suggest a generic design principle termed ‘conformational proofreading’ in which deformation enhances detection. We evaluate the optimal flexibility of the molecular recognizer, which is analogous to the stochasticity in a decision unit. In some scenarios, a flexible recognizer, i.e., a stochastic decision unit, performs better than a rigid, deterministic one. As a biological example, we discuss conformational changes during homologous recombination, the process of genetic exchange between two DNA strands.
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