Paired Guide Rna

Paired guide RNA is a CRISPR-based genome-editing design that uses two guide sequences to direct a programmable nuclease to distinct sites within the same DNA region, enabling coordinated modification of a larger target than a single guide. Each guide RNA binds a complementary DNA sequence near an appropriate protospacer adjacent motif, positioning the nuclease to create two targeted DNA breaks; cellular repair, often through nonhomologous end joining, can remove the intervening segment. This approach supports targeted deletions of genes, exons, or regulatory elements and helps researchers investigate gene function, model disease-associated changes, and engineer biological systems.

Paired Guide Rna - Related Videos

Research

JoVE Journal - Biology
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Visualization and Quantification of Intermolecular RNA Base Pairing in in vitro RNA Clusters Using Split Broccoli RNA Reporters

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2026

This protocol describes a visual assay using split Broccoli RNA reporters to detect and quantify intermolecular base pairing in RNA clusters in vitro.

Research

JoVE Journal - Biology
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Single Read and Paired End mRNA-Seq Illumina Libraries from 10 Nanograms Total RNA

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Cited by 30 •

2011

Here we describe a method for preparation of both single read and paired end Illumina mRNA-Seq sequencing libraries for gene expression analysis based on T7 linear RNA amplification. This protocol requires only 10 nanograms of starting total RNA and generates highly consistent libraries representing whole transcripts.

Research

JoVE Journal - Genetics
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CRISPR Guide RNA Cloning for Mammalian Systems

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Cited by 16 •

2018

Here, a simple, efficient, and cost-effective method of sgRNA cloning is outlined.

A Stepwise Guide to the Isolation and Analysis of Leaf Surface and Apoplastic RNA Using Arabidopsis Rosettes

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2025

We describe a simple yet highly reproducible method to isolate extracellular RNA from the leaf surface and apoplast of Arabidopsis plants.

Education

JoVE Core - Chemistry

DNA Base Pairing

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2020

Erwin Chargaff’s rules on DNA equivalence paved the way for the discovery of base pairing in DNA. Chargaff’s rules state that in a double-stranded DNA molecule, the amount of adenine (A) is equal to the amount of thymine (T); the amount of guanine (G) is equal to the amount of cytosine (C); and the sum of purines, A and G, is equal to the sum of pyrimidines, C and T (i.e., A+G = C+T). Later work by Watson and Crick revealed that in double-stranded DNA, A always forms two hydrogen bonds...

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