Cas9-induced Mutations

Cas9-induced mutations are targeted changes to DNA generated by the CRISPR-Cas9 genome-editing system, providing a way to investigate gene function and genetic variation. Guided by a complementary RNA sequence, the Cas9 nuclease binds a matching DNA target near a protospacer adjacent motif and creates a double-strand break; cellular repair through non-homologous end joining can introduce insertions or deletions, while template-directed repair can install defined sequence changes. In genetics, these mutations support gene knockout studies, functional analysis, disease modeling, and the development of engineered organisms. Their precision and flexibility have made Cas9 a central tool for studying genotype-phenotype relationships.

Cas9-induced Mutations - Related Videos

Research

JoVE Journal - Genetics
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A Standard Methodology to Examine On-site Mutagenicity As a Function of Point Mutation Repair Catalyzed by CRISPR/Cas9 and SsODN in Human Cells

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Cited by 5 •

2017

This protocol outlines the workflow of a CRISPR/Cas9-based gene editing system for the repair of point mutations in mammalian cells. Here, we use a combinatorial approach to gene editing with a detailed follow-on experimental strategy for measuring indel formation at the target site—in essence, analyzing onsite mutagenesis.

Education

JoVE Core - Microbiology

Spontaneous and Induced Mutations

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2025

Spontaneous mutations arise infrequently during DNA replication due to errors in the process. A key factor behind these errors is tautomeric shifts in nitrogenous bases, where bases transition from keto to enol forms or amino to imino forms. This shift can alter base-pairing rules, leading to mutations. Additionally, reactive oxygen species (ROS) arising from aerobic metabolism can damage DNA, resulting in depurination (loss of a purine base) or depyrimidination (loss of a pyrimidine base).

Using Next Generation Sequencing to Identify Mutations Associated with Repair of a CAS9-induced Double Strand Break Near the CD4 Promoter

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Cited by 5 •

2022

Presented here is sgRNA/CAS9 endonuclease and next-generation sequencing protocol that can be used to identify the mutations associated with double strand break repair near the CD4 promoter.

Establishing a Murine Tumor Cell Line In Vitro Using a Virus-Cas9 System

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2026

Source: Prasad, M. et al. In Vitro Establishment of a Genetically Engineered Murine Head and Neck Cancer Cell Line using an Adeno-Associated Virus-Cas9 System. J. Vis. Exp. (2020)This video demonstrates the in vitro transformation of murine epithelial cells through viral delivery of Cre recombinase and mutation-inducing components. It outlines the steps for Cas9 activation, cancer-gene modification, and the establishment of a tumorigenic murine cell line.

Preparing and Injecting Embryos of Culex Mosquitoes to Generate Null Mutations using CRISPR/Cas9

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Cited by 5 •

2020

CRISPR/Cas9 is increasingly used to characterize gene function in non-model organisms. This protocol describes how to generate knock-out lines of Culex pipiens, from preparing injection mixes, to obtaining and injecting mosquito embryos, as well as how to rear, cross, and screen injected mosquitoes and their progeny for desired mutations.

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