Literature DB >> 24750023

Effect of inert tails on the thermodynamics of DNA hybridization.

Lorenzo Di Michele1, Bortolo M Mognetti, Taiki Yanagishima, Patrick Varilly, Zachary Ruff, Daan Frenkel, Erika Eiser.   

Abstract

The selective hybridization of DNA is of key importance for many practical applications such as gene detection and DNA-mediated self-assembly. These applications require a quantitative prediction of the hybridization free energy. Existing methods ignore the effects of non-complementary ssDNA tails beyond the first unpaired base. We use experiments and simulations to show that the binding strength of complementary ssDNA oligomers is altered by these sequences of non-complementary nucleotides. Even a small number of non-binding bases are enough to raise the hybridization free energy by approximately 1 kcal/mol at physiological salt concentrations. We propose a simple analytical expression that accounts quantitatively for this variation as a function of tail length and salt concentration.

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Year:  2014        PMID: 24750023     DOI: 10.1021/ja500027v

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  9 in total

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6.  Kinetic control of the coverage of oil droplets by DNA-functionalized colloids.

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7.  Cellular Uptake of Tile-Assembled DNA Nanotubes.

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8.  Determining Sequence-Dependent DNA Oligonucleotide Hybridization and Dehybridization Mechanisms Using Coarse-Grained Molecular Simulation, Markov State Models, and Infrared Spectroscopy.

Authors:  Michael S Jones; Brennan Ashwood; Andrei Tokmakoff; Andrew L Ferguson
Journal:  J Am Chem Soc       Date:  2021-10-13       Impact factor: 15.419

9.  Microrheology of DNA hydrogels.

Authors:  Zhongyang Xing; Alessio Caciagli; Tianyang Cao; Iliya Stoev; Mykolas Zupkauskas; Thomas O'Neill; Tobias Wenzel; Robin Lamboll; Dongsheng Liu; Erika Eiser
Journal:  Proc Natl Acad Sci U S A       Date:  2018-07-25       Impact factor: 11.205

  9 in total

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