Seqa-dna Complex

The SeqA-DNA complex is a bacterial protein-DNA assembly that coordinates chromosome replication with the post-replication state of DNA. SeqA recognizes newly replicated, hemimethylated GATC sites, binds them, and promotes temporary sequestration of the replication origin, limiting immediate reinitiation while DNA methylation is restored. By linking DNA methylation status to replication control and chromosome organization, the complex supports orderly cell-cycle progression and genome stability. Studying SeqA-DNA interactions provides a mechanistic framework for understanding bacterial replication timing and chromosome architecture, while clarifying how cells prevent inappropriate initiation events.

Seqa-dna Complex - Related Videos

Research

JoVE Journal - Biology

Iterative Optimization of DNA Duplexes for Crystallization of SeqA-DNA Complexes

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2012

Crystal structure of protein–DNA complexes can provide insight into protein function, mechanism, as well as, the nature of the specific interaction. Here, we report how to optimize the length, sequence and ends of duplex DNA for co-crystallization with Escherichia coli SeqA, a negative regulator of replication initiation.

Isolation of Proteins from Viral DNA-protein Complexes

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2026

Source: Dembowski, J. A., et al. Purification of Viral DNA for the Identification of Associated Viral and Cellular Proteins. J. Vis. Exp. (2017).This video demonstrates the isolation of protein–viral DNA complexes from cell nuclei using click chemistry and magnetic bead purification. The protocol involves labeling viral genomes with alkyne-modified nucleotides, biotinylation via a click reaction, and binding to streptavidin-coated magnetic beads. Following washing and heat elution, the purified...

Immunoprecipitation of Target Protein-DNA Complexes from Motor Neuron Lysate

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2025

This video demonstrates the immunoprecipitation of DNA fragments crosslinked with target protein from stem cell-derived motor neuron lysates using target protein-specific antibody-coated magnetic beads.

Research

JoVE Journal - Bioengineering
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Visualization of Recombinant DNA and Protein Complexes Using Atomic Force Microscopy

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Cited by 6 •

2011

A tapping mode atomic force microscope (AFM) method for the visualization of plasmid DNA, cytoplasmic proteins, and DNA-protein complexes is described. The method includes alternate approaches for preparing samples for AFM imaging following biochemical manipulation. DNA containing specific protein interacting regions are observed in near-physiologic buffer conditions.

Self-assembly of Complex Two-dimensional Shapes from Single-stranded DNA Tiles

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Cited by 5 •

2015

DNA tiling is an effective approach to make programmable nanostructures. We describe the protocols to construct complex two-dimensional shapes by the self-assembly of single-stranded DNA tiles.

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