Modular nuclease segmentation improves genetic modification precision while managing system complexity for reliable cancer therapy.
A plant breeding method uses site-specific nucleases to induce targeted recombination events.
A catalytically inactive Cas9 fused to transcriptional activation domains directs guide RNAs to specific genomic loci.
A fusion polypeptide combines cell penetration and DNA binding to activate target genes.
Daisyfield gene drives utilize segmented CRISPR chains to prevent global dissemination while enabling efficient multi-locus trait introduction.
Engineered TALENs target hairpin-forming DNA sequences to delete pathological repeats without off-target mutations.
Deactivated Cas9 fusion proteins target frataxin regulatory elements to increase gene expression levels.
A Cascade complex paired with a deaminase enzyme converts targeted nucleotides in host cells without cleaving double-stranded DNA.
Guide RNA directs endogenous epigenetic enzymes to specific gene loci, eliminating toxicity and off-target effects from synthetic repressors.
A mutant MMLV reverse transcriptase synthesizes full-length cDNA from RNA templates.
Segmenting zinc finger domains into synthesizable fragments bypasses recombinant nucleic acid risks while simplifying library creation.
Hybrid zinc finger degron sequences reduce immunogenicity and side effects by enhancing sensitivity to immunomodulatory drugs at lower concentrations.
Small molecule-induced dimerization of fusion proteins reduces background expression while enabling temporal modulation control.
A programmable adeno-associated virus capsid integrates an ssDNA-binding domain to enable modular antibody attachment for targeted gene delivery.
High-throughput systems discover effector domains for synthetic transcription factors.
Cationic lipid nanoparticles encapsulate engineered nucleases to penetrate mucus barriers and correct CFTR mutations.
CRISPR base editing modifies the CCR5 gene to block HIV entry, avoiding off-target effects and genome instability from traditional nuclease methods.