Javascript must be enabled to continue!
Rapid Quantitative Evaluation of CRISPR Genome Editing by TIDE and TIDER v1
View through CrossRef
Current genome editing tools enable targeted mutagenesis of selected DNA sequences in many species. However, the efficiency and the type of introduced mutations by the genome editing method are largely dependent on the target site. As a consequence, the outcome of the editing operation is difficult to predict. Therefore, a quick assay to quantify the frequency of mutations is vital for a proper assessment of genome editing actions. We developed two methods that are rapid, cost-effective, and readily applicable: (1) TIDE, which can accurately identify and quantify insertions and deletions (indels) that arise after introduction of double strand breaks (DSBs); (2) TIDER, which is suited for template-mediated editing events including point mutations. Both methods only require a set of PCR reactions and standard Sanger sequencing runs. The sequence traces are analyzed by the TIDE or TIDER algorithm (available at https://tide.nki.nl or https://deskgen.com). The routine is easy, fast, and provides much more detailed information than current enzyme-based assays. TIDE and TIDER accelerate testing and designing of DSB-based genome editing strategies.
Title: Rapid Quantitative Evaluation of CRISPR Genome Editing by TIDE and TIDER v1
Description:
Current genome editing tools enable targeted mutagenesis of selected DNA sequences in many species.
However, the efficiency and the type of introduced mutations by the genome editing method are largely dependent on the target site.
As a consequence, the outcome of the editing operation is difficult to predict.
Therefore, a quick assay to quantify the frequency of mutations is vital for a proper assessment of genome editing actions.
We developed two methods that are rapid, cost-effective, and readily applicable: (1) TIDE, which can accurately identify and quantify insertions and deletions (indels) that arise after introduction of double strand breaks (DSBs); (2) TIDER, which is suited for template-mediated editing events including point mutations.
Both methods only require a set of PCR reactions and standard Sanger sequencing runs.
The sequence traces are analyzed by the TIDE or TIDER algorithm (available at https://tide.
nki.
nl or https://deskgen.
com).
The routine is easy, fast, and provides much more detailed information than current enzyme-based assays.
TIDE and TIDER accelerate testing and designing of DSB-based genome editing strategies.
Related Results
Genome engineering using CRISPR
Genome engineering using CRISPR
Clustered Regularly Interspersed Short Palindromic Repeats (often referred to as CRISPR) is a revolutionary new genome engineering technology that is capable of modifying virtually...
Introduction to CRISPR/Cas9
Introduction to CRISPR/Cas9
Clustered Regularly Interspersed Short Palindromic Repeats (often referred to as CRISPR) is a revolutionary new genome engineering technology that is capable of modifying virtually...
A viral guide RNA delivery system for CRISPR-based transcriptional activation and heritable targeted DNA demethylation in
Arabidopsis thaliana
A viral guide RNA delivery system for CRISPR-based transcriptional activation and heritable targeted DNA demethylation in
Arabidopsis thaliana
Abstract
Plant RNA viruses are used as delivery vectors for their high level of accumulation and efficient spread during virus multiplication and...
New Hope for Genome Editing in Cultivated Grasses: CRISPR Variants and Application
New Hope for Genome Editing in Cultivated Grasses: CRISPR Variants and Application
With the advent of Clustered Regularly Interspaced Short Palindromic Repeats (CRISPR) and CRISPR-associated protein (Cas) mediated genome editing, crop improvement has progressed s...
Targeted base editing enables safe and efficient knockout of ELANE for the treatment of ELANE-associated severe congenital neutropenia
Targeted base editing enables safe and efficient knockout of ELANE for the treatment of ELANE-associated severe congenital neutropenia
Abstract
Severe Congenital Neutropenia (SCN) is a rare hematological disorder characterized by profound neutrophil defic...
Editing: Problems of Terminology
Editing: Problems of Terminology
Taking into consideration the fact that editing is considered to be a field of scientific knowledge, a sphere of practical activity, and a discipline, problems of terminology appea...
Genome Editing in Bacteria (Part 1)
Genome Editing in Bacteria (Part 1)
This reference is a comprehensive review of genome editing in bacteria. The multi-part book meticulously consolidates research findings and insights on the applications of bacteria...
EVALUATION OF CRISPR/CAS9 GENOME-EDITING SYSTEM IN HUMAN STEM CELLS HSCS: THERAPEUTICS AND DIAGNOSTICS PROSPECTS
EVALUATION OF CRISPR/CAS9 GENOME-EDITING SYSTEM IN HUMAN STEM CELLS HSCS: THERAPEUTICS AND DIAGNOSTICS PROSPECTS
Background: CRISPR/Cas9 genome-editing technology has revolutionized human stem cell (HSC) research, offering novel therapeutic and diagnostic applications. HSCs play a crucial rol...

