细胞内拥挤对核酸相互作用影响的模型研究

IF 3.743 Q2 Biochemistry, Genetics and Molecular Biology
Shu-ichi Nakano and Naoki Sugimoto
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引用次数: 35

摘要

活细胞中的分子相互作用和反应在高浓度的背景分子和离子下发生。许多研究表明,细胞内分子具有不同于用简单水溶液获得的分子的特性。为了更好地了解生物分子在细胞内环境中的行为,在试管中模拟细胞条件下进行了生物物理实验。研究表明,高分子拥挤、空间限制、水活度和介电常数等生理水平的分子环境对DNA和RNA的杂交、高阶折叠和催化活性有显著影响。使用体外模型系统的实验方法有助于揭示环境效应的起源,并弥合核酸在体外和体内行为之间的差距。本文重点介绍了用于评价细胞内环境对核酸相互作用影响的模型实验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Model studies of the effects of intracellular crowding on nucleic acid interactions

Model studies of the effects of intracellular crowding on nucleic acid interactions

Molecular interactions and reactions in living cells occur with high concentrations of background molecules and ions. Many research studies have shown that intracellular molecules have characteristics different from those obtained using simple aqueous solutions. To better understand the behavior of biomolecules in intracellular environments, biophysical experiments were conducted under cell-mimicking conditions in a test tube. It has been shown that the molecular environments at the physiological level of macromolecular crowding, spatial confinement, water activity and dielectric constant, have significant effects on the interactions of DNA and RNA for hybridization, higher-order folding, and catalytic activity. The experimental approaches using in vitro model systems are useful to reveal the origin of the environmental effects and to bridge the gap between the behaviors of nucleic acids in vitro and in vivo. This paper highlights the model experiments used to evaluate the influences of intracellular environment on nucleic acid interactions.

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来源期刊
Molecular BioSystems
Molecular BioSystems 生物-生化与分子生物学
CiteScore
2.94
自引率
0.00%
发文量
0
审稿时长
2.6 months
期刊介绍: Molecular Omics publishes molecular level experimental and bioinformatics research in the -omics sciences, including genomics, proteomics, transcriptomics and metabolomics. We will also welcome multidisciplinary papers presenting studies combining different types of omics, or the interface of omics and other fields such as systems biology or chemical biology.
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