Spatiotemporal Dynamics of Single-stranded DNA Intermediates inEscherichia coli

Author:

Cherry Megan E.ORCID,Dubiel Katarzyna,Henry Camille,Wood Elizabeth A.,Revitt-Mills Sarah A.ORCID,Keck James L.,Cox Michael M.,van Oijen Antoine M.,Ghodke Harshad,Robinson Andrew

Abstract

AbstractSingle-stranded DNA gaps form within theE. colichromosome during replication, repair and recombination. However, information about the extent of ssDNA creation in the genome is limited. To complement a recent whole-genome sequencing study revealing ssDNA gap genomic distribution, size, and frequency, we used fluorescence microscopy to monitor the spatiotemporal dynamics of single-stranded DNA within liveE. colicells. The ssDNA was marked by a functional fluorescent protein fusion of the SSB protein that replaces the wild type SSB. During log-phase growth the SSB fusion produces a mixture of punctate foci and diffuse fluorescence spread throughout the cytosol. Many foci are clustered. Fluorescent markers of DNA polymerase III frequently co-localize with SSB foci, often localizing to the outer edge of the large SSB features. Novel SSB-enriched features form and resolve regularly during normal growth. UV irradiation induces a rapid increase in SSB foci intensity and produces large features composed of multiple partially overlapping foci. The results provide a critical baseline for further exploration of ssDNA generation during DNA metabolism. Alterations in the patterns seen in a mutant lacking RecB function tentatively suggest associations of particular SSB features with the repair of double strand breaks and post-replication gaps.

Publisher

Cold Spring Harbor Laboratory

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