Targeted Dna Integration

Targeted DNA integration is a genetic engineering approach that inserts a DNA sequence at a defined genomic location, enabling controlled modification of cellular genomes. The process typically uses a programmable nuclease, such as CRISPR-Cas, to create a break at the chosen site, while a donor DNA template supplies the desired sequence for insertion through homology-directed repair; site-specific recombinases can provide an alternative mechanism. This precision supports gene replacement, tagging, and regulation studies in biology, while reducing the random insertion effects associated with conventional methods. Applications include disease modeling, functional genomics, cell-line development, and engineered cell therapies.

Targeted Dna Integration - Related Videos

Research

JoVE Journal - Biology

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.

Cell-Free DNA Integrity Analysis in Urine Samples

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Cited by 16 •

2017

A method for analyzing DNA integrity in the cell-free supernatant fraction of urine samples is proposed. The method is suitable for early detection of urological malignancies and has proven accurate for the early diagnosis of bladder cancer.

Research

JoVE Journal - Biology
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Targeted DNA Methylation Analysis by Next-generation Sequencing

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Cited by 83 •

2015

Bisulfite amplicon sequencing (BSAS) is a method for quantifying cytosine methylation in targeted genomic regions of interest. This method uses bisulfite conversion paired with PCR amplification of target regions prior to next-generation sequencing to produce absolute quantitation of DNA methylation at a base-specific level.

Chromatin Immunoprecipitation to Identify Target Protein Binding Sites on Genomic DNA

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2025

In this video, we demonstrate the chromatin immunoprecipitation technique to identify protein binding sites on specific regions of the genomic DNA of oligodendrocyte precursor cells via the selective immunoprecipitation of protein-bound chromatin fragments. This method helps to study the interaction of several regulatory proteins, including transcription factors involved in gene regulation.

Research

JoVE Journal - Biology
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Non-Viral Engineering of Primary Human T Cells via Homology-Mediated End-Joining Targeted Integration of Large DNA Templates

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2025

A detailed protocol is provided for using CRISPR/Cas9 technology to achieve highly efficient targeted knock-in of large, multicistronic constructs in primary human T cells via the homology-mediated end joining (HMEJ) DNA repair pathway. T cells engineered with this cGMP-adaptable protocol maintain excellent cell expansion, cytotoxicity, and cytokine production.

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