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1
Two-phase stretching of molecular chains.
Proc Natl Acad Sci U S A. 2013 Feb 19;110(8):2816-21. doi: 10.1073/pnas.1218677110. Epub 2013 Feb 1.
2
Stretching of Long Double-Stranded DNA and RNA Described by the Same Approach.
J Chem Theory Comput. 2022 Jun 14;18(6):3911-3920. doi: 10.1021/acs.jctc.1c01221. Epub 2022 May 11.
3
Lattice stretching bistability and dynamic heterogeneity.
Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Apr;85(4 Pt 2):046601. doi: 10.1103/PhysRevE.85.046601. Epub 2012 Apr 2.
4
Secondary structure of double-stranded DNA under stretching: elucidation of the stretched form.
Phys Rev E Stat Nonlin Soft Matter Phys. 2011 Mar;83(3 Pt 1):031903. doi: 10.1103/PhysRevE.83.031903. Epub 2011 Mar 7.
5
DNA unzipping phase diagram calculated via replica theory.
Phys Rev E Stat Nonlin Soft Matter Phys. 2009 May;79(5 Pt 1):051923. doi: 10.1103/PhysRevE.79.051923. Epub 2009 May 28.
6
DNA stretching and compression: large-scale simulations of double helical structures.
J Mol Biol. 1999 Jun 25;289(5):1301-26. doi: 10.1006/jmbi.1999.2798.
7
Stretching short DNAs in electrolytes.
Mol Cell Biomech. 2006 Mar;3(1):13-9.
9
Sequence-Dependent Three Interaction Site Model for Single- and Double-Stranded DNA.
J Chem Theory Comput. 2018 Jul 10;14(7):3763-3779. doi: 10.1021/acs.jctc.8b00091. Epub 2018 Jun 26.
10
Forced-unfolding and force-quench refolding of RNA hairpins.
Biophys J. 2006 May 15;90(10):3410-27. doi: 10.1529/biophysj.105.078030. Epub 2006 Feb 10.

引用本文的文献

1
Multiplateau Force-Extension Curves of Long Double-Stranded DNA Molecules.
ACS Omega. 2025 Apr 10;10(15):14816-14825. doi: 10.1021/acsomega.4c09605. eCollection 2025 Apr 22.
2
Multi-plateau force-extension curves of long double-stranded DNA molecules.
bioRxiv. 2025 Feb 28:2023.03.12.532320. doi: 10.1101/2023.03.12.532320.
3
Strongly Bent Double-Stranded DNA: Reconciling Theory and Experiment.
Front Phys. 2019 Nov;7. doi: 10.3389/fphy.2019.00195. Epub 2019 Nov 29.
4
Generalized Born Implicit Solvent Models for Biomolecules.
Annu Rev Biophys. 2019 May 6;48:275-296. doi: 10.1146/annurev-biophys-052118-115325. Epub 2019 Mar 11.
5
The "sugar" coarse-grained DNA model.
J Mol Model. 2017 Feb;23(2):66. doi: 10.1007/s00894-017-3209-z. Epub 2017 Feb 9.

本文引用的文献

1
Heat conductivity of DNA double helix.
Phys Rev B Condens Matter Mater Phys. 2011 Jun 15;83(24). doi: 10.1103/PhysRevB.83.245406.
2
[New coarse-grained DNA model].
Biofizika. 2011 May-Jun;56(3):396-402.
3
Single-molecule experiments in biological physics: methods and applications.
J Phys Condens Matter. 2006 Aug 16;18(32):R531-83. doi: 10.1088/0953-8984/18/32/R01. Epub 2006 Jul 25.
4
Overstretching DNA at 65 pN does not require peeling from free ends or nicks.
J Am Chem Soc. 2011 Mar 16;133(10):3219-21. doi: 10.1021/ja108952v. Epub 2011 Jan 5.
6
Unraveling the structure of DNA during overstretching by using multicolor, single-molecule fluorescence imaging.
Proc Natl Acad Sci U S A. 2009 Oct 27;106(43):18231-6. doi: 10.1073/pnas.0904322106. Epub 2009 Oct 19.
7
Free energies and forces in helix-coil transition of homopolypeptides under stretching.
Phys Chem Chem Phys. 2009 May 28;11(20):4019-24. doi: 10.1039/b820021a. Epub 2009 Mar 6.
9
Optical tweezers experiments resolve distinct modes of DNA-protein binding.
Biopolymers. 2009 Apr;91(4):265-82. doi: 10.1002/bip.21123.
10
Biological consequences of tightly bent DNA: the other life of a macromolecular celebrity.
Biopolymers. 2007 Feb 5;85(2):115-30. doi: 10.1002/bip.20627.

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