Duplex Specific Nuclease

Duplex-specific nuclease (DSN) is an endonuclease that preferentially cleaves double-stranded DNA and DNA strands paired with RNA, making it useful for selective nucleic acid analysis. Its activity depends on duplex formation and sequence complementarity, allowing it to digest highly abundant or perfectly matched nucleic acid species while largely sparing single-stranded molecules. In biology, DSN supports normalization of cDNA libraries, enrichment of rare transcripts, microRNA detection, and subtractive hybridization. These applications improve the representation of low-abundance sequences and help researchers investigate gene expression, genomic variation, and other molecular signatures in complex samples.

Duplex Specific Nuclease - Related Videos

Research

JoVE Journal - Biology
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Mouse Genome Engineering Using Designer Nucleases

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Cited by 14 •

2014

Designer nucleases such as zinc finger nucleases (ZFNs) and transcription activator-like effector nucleases (TALENs) can be used to modify the genome of mouse preimplantation embryos by triggering both the nonhomologous end joining (NHEJ) and homologous recombination (HR) pathways. These advances enable the rapid generation of mice with precise genetic modifications.

Research

JoVE EoE - PCR Techniques

Duplex Digital PCR for Simultaneous Quantification of Dual Genetic Markers

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2025

In this video, we demonstrate the duplex digital PCR (ddPCR) technique — a modification of the traditional PCR technique that is useful in detecting two different genetic markers simultaneously. A single PCR reaction is partitioned into nanoliter-sized emulsified droplets that are independently amplified, and the detection of differently colored fluorescence amplification signals from the fraction of droplets is used to compute the initial concentration of the target sequences.

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.

TALEN-Mediated Targeted Gene Integration: Using Engineered Sequence-Specific Nucleases for the Precise Insertion of Fluorescent Protein Gene into hiPSCs

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2025

This video describes a precise genome editing technique in human induced pluripotent stem cells, or hiPSCs, using TALENs to create double-stranded breaks at a targeted locus, inducing homology-directed repair for fluorescence protein gene integration.

Helicase Activity Measurement of a Target Protein Using Biotin-Labeled RNA Duplexes

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2025

In this video, we demonstrate the procedure to determine the helicase activity of a target protein to unwind the biotin-labeled dsRNA substrate. The activity of the enzyme was identified by analyzing the electrophoretic mobility shift, followed by a chemiluminescence assay using chemiluminescent enzyme-conjugated streptavidin.

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