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Displacement and dissociation of oligonucleotides during DNA hairpin closure under strain.


ABSTRACT: The hybridization kinetic of an oligonucleotide to its template is a fundamental step in many biological processes such as replication arrest, CRISPR recognition, DNA sequencing, DNA origami, etc. Although single kinetic descriptions exist for special cases of this problem, there are no simple general prediction schemes. In this work, we have measured experimentally, with no fluorescent labelling, the displacement of an oligonucleotide from its substrate in two situations: one corresponding to oligonucleotide binding/unbinding on ssDNA and one in which the oligonucleotide is displaced by the refolding of a dsDNA fork. In this second situation, the fork is expelling the oligonucleotide thus significantly reducing its residence time. To account for our data in these two situations, we have constructed a mathematical model, based on the known nearest neighbour dinucleotide free energies, and provided a good estimate of the residence times of different oligonucleotides (DNA, RNA, LNA) of various lengths in different experimental conditions (force, temperature, buffer conditions, presence of mismatches, etc.). This study provides a foundation for the dynamics of oligonucleotide displacement, a process of importance in numerous biological and bioengineering contexts.

SUBMITTER: Ding F 

PROVIDER: S-EPMC9757040 | biostudies-literature | 2022 Dec

REPOSITORIES: biostudies-literature

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Displacement and dissociation of oligonucleotides during DNA hairpin closure under strain.

Ding Fangyuan F   Cocco Simona S   Raj Saurabh S   Manosas Maria M   Nguyen Thao Thi Thu TTT   Spiering Michelle M MM   Bensimon David D   Allemand Jean-François JF   Croquette Vincent V  

Nucleic acids research 20221101 21


The hybridization kinetic of an oligonucleotide to its template is a fundamental step in many biological processes such as replication arrest, CRISPR recognition, DNA sequencing, DNA origami, etc. Although single kinetic descriptions exist for special cases of this problem, there are no simple general prediction schemes. In this work, we have measured experimentally, with no fluorescent labelling, the displacement of an oligonucleotide from its substrate in two situations: one corresponding to o  ...[more]

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