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DNA 操作与单分子成像。

DNA Manipulation and Single-Molecule Imaging.

机构信息

Division of Life Science and Engineering, School of Science and Engineering, Tokyo Denki University, Hatoyama-cho, Hiki-gun, Saitama 350-0394, Japan.

Department of Environmental Engineering Science, Graduate School of Science and Technology, Gunma University, Kiryu, Gunma 376-8515, Japan.

出版信息

Molecules. 2021 Feb 17;26(4):1050. doi: 10.3390/molecules26041050.

Abstract

DNA replication, repair, and recombination in the cell play a significant role in the regulation of the inheritance, maintenance, and transfer of genetic information. To elucidate the biomolecular mechanism in the cell, some molecular models of DNA replication, repair, and recombination have been proposed. These biological studies have been conducted using bulk assays, such as gel electrophoresis. Because in bulk assays, several millions of biomolecules are subjected to analysis, the results of the biological analysis only reveal the average behavior of a large number of biomolecules. Therefore, revealing the elementary biological processes of a protein acting on DNA (e.g., the binding of protein to DNA, DNA synthesis, the pause of DNA synthesis, and the release of protein from DNA) is difficult. Single-molecule imaging allows the analysis of the dynamic behaviors of individual biomolecules that are hidden during bulk experiments. Thus, the methods for single-molecule imaging have provided new insights into almost all of the aspects of the elementary processes of DNA replication, repair, and recombination. However, in an aqueous solution, DNA molecules are in a randomly coiled state. Thus, the manipulation of the physical form of the single DNA molecules is important. In this review, we provide an overview of the unique studies on DNA manipulation and single-molecule imaging to analyze the dynamic interaction between DNA and protein.

摘要

细胞中的 DNA 复制、修复和重组在遗传信息的调控、维持和传递中起着重要作用。为了阐明细胞中的生物分子机制,已经提出了一些 DNA 复制、修复和重组的分子模型。这些生物研究使用了批量分析,如凝胶电泳。由于在批量分析中,数以百万计的生物分子被分析,因此生物分析的结果仅揭示了大量生物分子的平均行为。因此,揭示蛋白质作用于 DNA 的基本生物学过程(例如,蛋白质与 DNA 的结合、DNA 合成、DNA 合成的暂停以及蛋白质从 DNA 上的释放)是困难的。单分子成像允许分析在批量实验中隐藏的单个生物分子的动态行为。因此,单分子成像方法为 DNA 复制、修复和重组的基本过程的几乎所有方面提供了新的见解。然而,在水溶液中,DNA 分子处于随机卷曲状态。因此,对单个 DNA 分子的物理形态的操纵是很重要的。在这篇综述中,我们提供了对 DNA 操作和单分子成像的独特研究的概述,以分析 DNA 与蛋白质之间的动态相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fa8/7922115/9ea4c71fdf72/molecules-26-01050-g008.jpg

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