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重新审视 HullRadSAS 中的大分子水合作用。

Revisiting macromolecular hydration with HullRadSAS.

机构信息

Thomas C. Jenkins Department of Biophysics, Johns Hopkins University, Baltimore, MD, 21218, USA.

Department of Cell and Molecular Biology, University of Mississippi Medical Center, Jackson, MS, 39216, USA.

出版信息

Eur Biophys J. 2023 Jul;52(4-5):215-224. doi: 10.1007/s00249-022-01627-8. Epub 2023 Jan 5.

Abstract

Hydration of biological macromolecules is important for their stability and function. Historically, attempts have been made to describe the degree of macromolecular hydration using a single parameter over a narrow range of values. Here, we describe a method to calculate two types of hydration: surface shell water and entrained water. A consideration of these two types of hydration helps to explain the "hydration problem" in hydrodynamics. The combination of these two types of hydration allows accurate calculation of hydrodynamic volume and related macromolecular properties such as sedimentation and diffusion coefficients, intrinsic viscosities, and the concentration-dependent non-ideality identified with sedimentation velocity experiments.

摘要

生物大分子的水合对于它们的稳定性和功能很重要。历史上,人们曾试图用一个单一参数来描述在较窄范围内的生物大分子水合程度。在这里,我们描述了一种计算两种类型水合的方法:表面壳层水和夹带水。考虑这两种类型的水合有助于解释流体力学中的“水合问题”。这两种水合的结合可以准确计算流体力学体积和相关的大分子性质,如沉降和扩散系数、特性粘度以及与沉降速度实验相关的浓度依赖性非理想性。

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