G Quadruplex Dna

G-quadruplex DNA is a noncanonical nucleic acid structure formed by guanine-rich DNA sequences, adding a regulatory layer to the familiar double helix. Four guanine bases associate through Hoogsteen hydrogen bonding to create a planar G-tetrad, and stacked tetrads are stabilized by monovalent cations, especially potassium, within the central channel. These structures can form in genomic regions such as telomeres and gene promoters, where they influence DNA replication, transcription, and genome stability. Studying G-quadruplex DNA helps biochemists understand gene regulation and develop molecular probes or small molecules that selectively stabilize or disrupt these structures for research and therapeutic applications.

G Quadruplex Dna - Related Videos

Research

JoVE Journal - Biochemistry

A G-quadruplex DNA-affinity Approach for Purification of Enzymatically Active G4 Resolvase1

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Cited by 6 •

2017

G4 Resolvase1 binds to G-quadruplex (G4) structures with the tightest reported affinity for a G4-binding protein and represents the majority of the G4-DNA unwinding activity in HeLa cells. We describe a novel protocol that harnesses the affinity and ATP-dependent unwinding activity of G4-Resolvase1 to specifically purify catalytically active recombinant G4R1.

Research

JoVE Journal - Biology
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Single-Molecule Fluorescence Visualization of DNA Polymerase Dynamics at G-Quadruplexes

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2025

This protocol outlines a fluorescence microscopy-based single-molecule DNA replication assay, enabling real-time visualization of interactions between DNA polymerases and obstacles such as G-quadruplex structures.

In Vitro Chemical Mapping of G-Quadruplex DNA Structures by Bis-3-Chloropiperidines

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2023

Bis-3-chloropiperidines (B-CePs) are useful chemical probes to identify and characterize G-quadruplex structures in DNA templates in vitro. This protocol details the procedure to perform probing reactions with B-CePs and to resolve reaction products by high-resolution polyacrylamide gel electrophoresis.

Single-molecule Manipulation of G-quadruplexes by Magnetic Tweezers

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Cited by 4 •

2017

A single-molecule magnetic tweezers platform to manipulate G-quadruplexes is reported, which allows for the study of G4 stability and regulation by various proteins.

Amplification, Next-generation Sequencing, and Genomic DNA Mapping of Retroviral Integration Sites

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Cited by 56 •

2016

We describe a protocol for amplifying retroviral integration sites from the genomic DNA of infected cells, sequencing the amplified virus-host junctions, and then mapping these sequences to a reference genome. We also describe techniques to quantify the distribution of integration sites relative to various genomic annotations using BEDTools.

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