Targeting Vector Construction

Targeting vector construction is a molecular biology method for designing DNA molecules that introduce precise genetic changes at a chosen genomic locus, making it valuable for investigating gene function during development. A targeting vector typically contains sequences homologous to the target region, a planned modification such as a deletion or reporter gene, and selectable elements; after delivery into cells, homology-directed recombination aligns the vector with the matching chromosome and enables targeted integration. In developmental biology, these vectors support the generation of gene knockouts, knock-ins, and conditional alleles, allowing researchers to link specific genes with embryonic patterning, cell differentiation, tissue formation, and disease-related phenotypes.

Targeting Vector Construction - Related Videos

Research

JoVE Journal - Biology
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Subcloning Plus Insertion (SPI) - A Novel Recombineering Method for the Rapid Construction of Gene Targeting Vectors

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Cited by 4 •

2015

Gene targeting methodologies can be used to generate transgenic mice with knockout, knock-in and tagged alleles. Here, we describe an improved method of recombineering in E. coli, that we term ‘subcloning plus insertion’, which can be used to generate custom gene targeting vectors rapidly.

A Simple and Efficient Approach to Construct Mutant Vaccinia Virus Vectors

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Cited by 13 •

2016

Vaccinia virus (VV) has been widely used in biomedical research and the improvement of human health. This article describes a simple, highly efficient method to edit the VV genome using a CRISPR-Cas9 system.

Research

JoVE Journal - Immunology and Infection

A Tetracycline-regulated Cell Line Produces High-titer Lentiviral Vectors that Specifically Target Dendritic Cells

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Cited by 6 •

2013

Here, we use retroviral transduction and concatemeric transfection to create a cell line that can express the components of a lentiviral vector (LV) in the absence of tetracycline. This LV encodes GFP and is pseudotyped with a glycoprotein, SVGmu, which is specific for a receptor on dendritic cells.

High-throughput CRISPR Vector Construction and Characterization of DNA Modifications by Generation of Tomato Hairy Roots

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Cited by 37 •

2016

Using DNA assembly, multiple CRISPR vectors can be constructed in parallel in a single cloning reaction, making the construction of large numbers of CRISPR vectors a simple task. Tomato hairy roots are an excellent model system to validate CRISPR vectors and generate mutant materials.

Targeting of Deep Brain Structures with Microinjections for Delivery of Drugs, Viral Vectors, or Cell Transplants

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Cited by 23 •

2010

In this article, we show a method to make glass capillary needles with a 50-μm lumen. This technique significantly reduces the brain damage, minimizes passive diffusion of drugs and allows a precise targeting into the rodent brain.

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