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  2. CRISPR gene editing - Wikipedia

    en.wikipedia.org/wiki/CRISPR_gene_editing

    CRISPR-Cas9 genome editing techniques have many potential applications. The use of the CRISPR-Cas9-gRNA complex for genome editing [10] was the AAAS's choice for Breakthrough of the Year in 2015. [11] Many bioethical concerns have been raised about the prospect of using CRISPR for germline editing, especially in human embryos. [12]

  3. CRISPR interference - Wikipedia

    en.wikipedia.org/wiki/CRISPR_interference

    CRISPR interference (CRISPRi) is a genetic perturbation technique that allows for sequence-specific repression of gene expression in prokaryotic and eukaryotic cells. [1] It was first developed by Stanley Qi and colleagues in the laboratories of Wendell Lim , Adam Arkin, Jonathan Weissman , and Jennifer Doudna . [ 2 ]

  4. Here’s what a Nobel Prize-winning scientist wants you ... - AOL

    www.aol.com/nobel-prize-winning-scientist-breaks...

    In his new book “The Catalyst,” Thomas R. Cech talks about the Covid-19 vaccines, what RNA means for future health crises and how gene editing with CRISPR factors in.

  5. CRISPR - Wikipedia

    en.wikipedia.org/wiki/CRISPR

    Cas9 (or "CRISPR-associated protein 9") is an enzyme that uses CRISPR sequences as a guide to recognize and open up specific strands of DNA that are complementary to the CRISPR sequence. Cas9 enzymes together with CRISPR sequences form the basis of a technology known as CRISPR-Cas9 that can be used to edit genes within living organisms.

  6. CRISPR activation - Wikipedia

    en.wikipedia.org/wiki/CRISPR_activation

    See: Guide RNA, CRISPR. Complementary base pairing between the sgRNA and genomic DNA allows targeting of Cas9 or dCas9. A small guide RNA (sgRNA), or gRNA is an RNA with around 20 nucleotides used to direct Cas9 or dCas9 to their targets. gRNAs contain two major regions of importance for CRISPR systems: the scaffold and spacer regions.

  7. Off-target genome editing - Wikipedia

    en.wikipedia.org/wiki/Off-target_genome_editing

    CRISPR-cas13b, using a type IV CRISPR-Cas system (as opposed to the commonly used type II) can target and edit specific RNA sequences. [46] Such an RNA editing platform has the ability to specifically edit mRNA, and therefore protein translation, without altering the DNA.

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