Beneficial and Detrimental Effects of Nonspecific Binding During DNA Hybridization
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Abstract
DNA strands have to sample numerous states to find the alignment that maximizes Watson-Crick-Franklin base pairing. This process depends strongly on sequence, which affects the stability of the native duplex as well as the prevalence of non-native inter- and intra-molecular helices. We present a theory which describes DNA hybridization as a three stage process: diffusion, registry search, and zipping. We find that non-specific binding affects each of these stages in different ways. Mis-registered intermolecular binding in the registry search stage helps DNA strands sample different alignments and accelerates the hybridization rate. Non-native intramolecular structure affects all three stages by rendering portions of the molecule inert to intermolecular association, limiting mis-registered alignments to be sampled, and impeding the zipping process. Once inregister base-pairs are formed, the stability of the native structure is important to hold the molecules together long enough for non-native contacts to break.
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- last seen: 2026-05-19T01:45:01.086888+00:00