Gene Knockout Efficiency

Gene knockout efficiency is the proportion of targeted cells or organisms in which a chosen gene is successfully inactivated, a key measure of reliability in genetic experiments. In genome editing, a nuclease such as CRISPR-associated Cas9 creates a site-specific DNA break, and repair through error-prone end joining can introduce disruptive insertions or deletions; efficiency depends on guide design, delivery, cell type, and genomic locus. Measuring efficiency with genotyping, sequencing, or protein-level assays helps researchers optimize editing conditions, distinguish complete from partial knockout, and interpret resulting phenotypes in functional genomics, disease modeling, and biotechnology.

Gene Knockout Efficiency - Related Videos

Research

JoVE Journal - Bioengineering
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A Protocol for Multiple Gene Knockout in Mouse Small Intestinal Organoids Using a CRISPR-concatemer

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Cited by 17 •

2017

This protocol describes the steps for cloning multiple single guide RNAs into one guide RNA concatemer vector, which is of particular use in creating multi-gene knockouts using CRISPR/Cas9 technology. The generation of double knockouts in intestinal organoids is shown as a possible application of this method.

Research

JoVE EoE - Genome Editing Techniques

CRISPR Concatemer-Mediated Multiple Gene Knockout: A Technique to Simultaneously Knockout Multiple Genes by Non-Homologous End-Joining Pathway in Mouse Intestinal Cells

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2025

This video describes a gene knockout technique using a CRISPR-concatemer to simultaneously knock out multiple genes in cultured mouse intestinal organoid cells. This method is used to knock out a diseased gene and to elucidate the function of a gene and its paralogues.

Education

JoVE Core - Biology

In-vitro Mutagenesis (Gene Knockouts)

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2026

To learn more about the function of a gene, researchers can observe what happens when the gene is inactivated or “knocked out,” by creating genetically engineered knockout animals. Knockout mice have been particularly useful as models for human diseases such as cancer, Parkinson’s disease, and diabetes. The Process Genes can be randomly knocked out, or specific genes can be targeted. To knock out a particular gene, an engineered piece of DNA called a targeting vector is used to replace the...

Research

JoVE Journal - Biology
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Using the Gene Pulser MXcell Electroporation System to Transfect Primary Cells with High Efficiency

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Cited by 11 •

2010

This procedure shows how to use the Gene Pulser MXcell electroporation system to rapidly and easily identify the best electroporation conditions for mouse embryonic fibroblasts (MEFs) or other primary cells. Considerations for troubleshooting are also discussed in the associated video.

Research

JoVE Journal - Genetics
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Efficient Production and Identification of CRISPR/Cas9-generated Gene Knockouts in the Model System Danio rerio

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Cited by 34 •

2018

Targeted genome editing in the model system Danio rerio (zebrafish) has been greatly facilitated by the emergence of CRISPR-based approaches. Herein, we describe a streamlined, robust protocol for generation and identification of CRISPR-derived nonsense alleles that incorporates the heteroduplex mobility assay and identification of mutations using next-generation sequencing.

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