Literature DB >> 33671359

DNA Manipulation and Single-Molecule Imaging.

Shunsuke Takahashi1, Masahiko Oshige2,3, Shinji Katsura2,3.   

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.

Entities:  

Keywords:  DNA; DNA manipulation; fluorescence microscope; single-molecule

Mesh:

Substances:

Year:  2021        PMID: 33671359      PMCID: PMC7922115          DOI: 10.3390/molecules26041050

Source DB:  PubMed          Journal:  Molecules        ISSN: 1420-3049            Impact factor:   4.411


  222 in total

1.  Voltage-driven DNA translocations through a nanopore.

Authors:  A Meller; L Nivon; D Branton
Journal:  Phys Rev Lett       Date:  2001-04-09       Impact factor: 9.161

Review 2.  The renaissance of fluorescence resonance energy transfer.

Authors:  P R Selvin
Journal:  Nat Struct Biol       Date:  2000-09

3.  One-end immobilization of individual DNA molecules on a functional hydrophobic glass surface.

Authors:  Shun-ichi Matsuura; Hirofumi Kurita; Michihiko Nakano; Jun Komatsu; Kazunori Takashima; Shinji Katsura; Akira Mizuno
Journal:  J Biomol Struct Dyn       Date:  2002-12

Review 4.  DNA replication fidelity in Escherichia coli: a multi-DNA polymerase affair.

Authors:  Iwona J Fijalkowska; Roel M Schaaper; Piotr Jonczyk
Journal:  FEMS Microbiol Rev       Date:  2012-04-05       Impact factor: 16.408

5.  The kinetics of YOYO-1 intercalation into single molecules of double-stranded DNA.

Authors:  Marcel Reuter; David T F Dryden
Journal:  Biochem Biophys Res Commun       Date:  2010-11-10       Impact factor: 3.575

6.  Direct observation of tube-like motion of a single polymer chain.

Authors:  T T Perkins; D E Smith; S Chu
Journal:  Science       Date:  1994-05-06       Impact factor: 47.728

7.  DNA-tension dependence of restriction enzyme activity reveals mechanochemical properties of the reaction pathway.

Authors:  Bram van den Broek; Maarten C Noom; Gijs J L Wuite
Journal:  Nucleic Acids Res       Date:  2005-05-10       Impact factor: 16.971

8.  Mechanism and timing of Mcm2-7 ring closure during DNA replication origin licensing.

Authors:  Simina Ticau; Larry J Friedman; Kanokwan Champasa; Ivan R Corrêa; Jeff Gelles; Stephen P Bell
Journal:  Nat Struct Mol Biol       Date:  2017-02-13       Impact factor: 15.369

9.  The mechanism of DNA unwinding by the eukaryotic replicative helicase.

Authors:  Daniel R Burnham; Hazal B Kose; Rebecca B Hoyle; Hasan Yardimci
Journal:  Nat Commun       Date:  2019-05-14       Impact factor: 14.919

10.  DNA nanotechnology assisted nanopore-based analysis.

Authors:  Taoli Ding; Jing Yang; Victor Pan; Nan Zhao; Zuhong Lu; Yonggang Ke; Cheng Zhang
Journal:  Nucleic Acids Res       Date:  2020-04-06       Impact factor: 16.971

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