Targeted Gene Disruption

Targeted gene disruption is the deliberate alteration or inactivation of a selected gene to determine its function and consequences in an organism or cell. In a common approach, a guide RNA directs the CRISPR-Cas9 nuclease to a matching DNA sequence, where Cas9 creates a double-strand break; error-prone repair through nonhomologous end joining can introduce insertions or deletions that disable the gene, while a donor template can support precise replacement. In genetics research, this method helps link genes to traits, model inherited disorders, validate disease mechanisms, and assess potential therapeutic targets.

Targeted Gene Disruption - Related Videos

Education

JoVE Science Education - Advanced Biology

Recombineering and Gene Targeting

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2023

One of the most widely used tools in modern biology is molecular cloning with restriction enzymes, which create compatible ends between DNA fragments that allow them to be joined together. However, this technique has certain restrictions that limit its applicability for large or complex DNA construct generation. A newer technique that addresses some of these shortcomings is recombineering, which modifies DNA using homologous recombination (HR), the exchange between different DNA molecules based...

Research

JoVE Journal - Genetics

Generation of a Gene-disrupted Streptococcus mutans Strain Without Gene Cloning

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Cited by 1 •

2017

We describe a facile, rapid, and relatively inexpensive method for the generation of gene-disrupted Streptococcus mutans strains; this technique may be adapted for the generation of gene-disrupted strains of various species.

Rat Model of Blood-brain Barrier Disruption to Allow Targeted Neurovascular Therapeutics

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Cited by 9 •

2012

Blood-brain barrier disruption aids the delivery of certain drugs to the brain. Mannitol delivered intra-arterially shrinks cells surrounding blood vessels in order to physically disrupt the barrier.

Targeted in Situ Mutagenesis of Histone Genes in Budding Yeast

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Cited by 5 •

2017

A strategy for generating mutations in histone genes at their endogenous location in Saccharomyces cerevisiae is presented.

Biolistic-Mediated Gene Transfer: A Technique to Deliver Gene of Interest in Target Cells via a Biolistic Gene Gun

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2025

In this video, we demonstrate the protocol of biolistic gene gun-mediated gene delivery in cultured cells. This method provides a simple method of stable genetic transformation using a minimal quantity of DNA.

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