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计算核酸周围的离子。

Counting the ions surrounding nucleic acids.

作者信息

Jacobson David R, Saleh Omar A

机构信息

Department of Physics, University of California, Santa Barbara, CA 93106, USA.

Materials Department and BMSE Program, University of California, Santa Barbara, CA 93106, USA.

出版信息

Nucleic Acids Res. 2017 Feb 28;45(4):1596-1605. doi: 10.1093/nar/gkw1305.

Abstract

Nucleic acids are strongly negatively charged, and thus electrostatic interactions-screened by ions in solution-play an important role in governing their ability to fold and participate in biomolecular interactions. The negative charge creates a region, known as the ion atmosphere, in which cation and anion concentrations are perturbed from their bulk values. Ion counting experiments quantify the ion atmosphere by measuring the preferential ion interaction coefficient: the net total number of excess ions above, or below, the number expected due to the bulk concentration. The results of such studies provide important constraints on theories, which typically predict the full three-dimensional distribution of the screening cloud. This article reviews the state of nucleic acid ion counting measurements and critically analyzes their ability to test both analytical and simulation-based models.

摘要

核酸带有很强的负电荷,因此,由溶液中的离子屏蔽的静电相互作用在决定其折叠能力和参与生物分子相互作用方面起着重要作用。负电荷形成了一个被称为离子氛围的区域,其中阳离子和阴离子的浓度与其本体值相比发生了扰动。离子计数实验通过测量优先离子相互作用系数来量化离子氛围:即高于或低于由于本体浓度所预期数量的过量离子的净总数。这些研究结果为理论提供了重要的限制条件,这些理论通常预测屏蔽云的完整三维分布。本文综述了核酸离子计数测量的现状,并批判性地分析了它们检验基于分析和模拟的模型的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8fd9/5389524/c4f3161ecc65/gkw1305fig1.jpg

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