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Related Concept Videos

CRISPR01:59

CRISPR

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Genome editing technologies allow scientists to modify an organism’s DNA via the addition, removal, or rearrangement of genetic material at specific genomic locations. These types of techniques could potentially be used to cure genetic disorders such as hemophilia and sickle cell anemia. One popular and widely used DNA-editing research tool that could lead to safe and effective cures for genetic disorders is the CRISPR-Cas9 system. CRISPR-Cas9 stands for Clustered Regularly Interspaced...
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CRISPR and crRNAs02:53

CRISPR and crRNAs

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Bacteria and archaea are susceptible to viral infections just like eukaryotes; therefore, they have developed a unique adaptive immune system to protect themselves. Clustered regularly interspaced short palindromic repeats and CRISPR-associated proteins (CRISPR-Cas) are present in more than 45% of known bacteria and 90% of known archaea.
The CRISPR-Cas system stores a copy of foreign DNA in the host genome and uses it to identify the foreign DNA upon reinfection. CRISPR-Cas has three different...
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Homologous Recombination02:31

Homologous Recombination

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The basic reaction of homologous recombination (HR) involves two chromatids that contain DNA sequences sharing a significant stretch of identity. One of these sequences uses a strand from another as a template to synthesize DNA in an enzyme-catalyzed reaction. The final product is a novel amalgamation of the two substrates. To ensure an accurate recombination of sequences, HR is restricted to the S and G2 phases of the cell cycle. At these stages, the DNA has been replicated already and the...
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What is Genetic Engineering?00:49

What is Genetic Engineering?

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Overview
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Are We Making Genetically Modified Humans?

The CRISPR journal·2026
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Enhanced editing of <i>Bifidobacterium lactis</i> using the endogenous Type I-G CRISPR-Cas system.

Applied and environmental microbiology·2026
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Occurrence and applications of CRISPR-Cas systems in bifidobacteria.

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An updated evolutionary classification of CRISPR-Cas systems including rare variants.

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Phage-based delivery of CRISPR-associated transposases for targeted bacterial editing.

Proceedings of the National Academy of Sciences of the United States of America·2025
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Differential modulation of post-antibiotic colonization resistance to <i>Clostridioides difficile</i> by two probiotic <i>Lactobacillus</i> strains.

mBio·2025
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Evaluation of Prime Editing Efficiency in Human Immortalized MSC-TERT Cells with Osteogenic Potential for Modeling <i>FGFR2</i>-Linked Craniosynostosis.

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Induction of SpCas9-Directed Immune Responses Using Lipid Nanoparticles and Identification of SpCas9-Derived T Cell Epitopes in C57BL/6 Mice.

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Advice from the CRISPR Whisperer.

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CRISPR Learns to Read the Epigenome.

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Increasing the Effective Gene Drive Homing Rate by Targeting the Haploinsufficient Spermatogenesis Gene <i>Klhl10</i>.

The CRISPR journal·2026
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<i>Corrigendum to:</i> "Subtypes of Type I-E CRISPR-Cas Systems Distribution in Human <i>Escherichia coli</i> Isolates from China".

The CRISPR journal·2026
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Updated: Jun 13, 2025

Gene Digital Circuits Based on CRISPR-Cas Systems and Anti-CRISPR Proteins
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Gene Digital Circuits Based on CRISPR-Cas Systems and Anti-CRISPR Proteins

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Facing Systemic Uncertainty, Can the CRISPR Community Stay the Course?

Rodolphe Barrangou1

  • 1Food, Bioprocessing and Nutrition Sciences, North Carolina State University, Raleigh, North Carolina, USA.

The CRISPR Journal
|June 12, 2025
PubMed
Summary

No abstract available in PubMed .

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