Date published: 2026-8-30

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GPRC5B Double Nickase Plasmid (m): sc-425694-NIC

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Datasheets
  • Target species: mouse
  • 20 µg of transfection-ready, purified plasmid DNA; Suitable for up to 20 transfections
  • GPRC5B Double Nickase Plasmid (m) consists of a pair of plasmids each encoding a D10A mutated Cas9 nuclease and a target-specific 20 nt guide RNA (gRNA) designed to knockout gene expression with greater specificity than its CRISPR/Cas9 KO counterpart
  • Paired gRNA sequences are offset by approximately 20 bp to allow for specific Cas9-mediated double nicking of the genomic DNA, which mimics a DSB
  • One plasmid in the pair contains a puromycin-resistance gene for selection; the other plasmid in the pair contains a GFP marker to visually confirm transfection
  • GPRC5B Double Nickase Plasmid (m) and GPRC5B Double Nickase Plasmid (m2) encode distinct paired gRNA designs targeting Gprc5b. One or both designs may be available
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    Ordering Information

    Product NameCatalog #UNITPriceQtyFAVORITES

    GPRC5B Double Nickase Plasmid (m)

    sc-425694-NIC
    20 µg
    $410.00

    GPRC5B Double Nickase Plasmid (m2)

    sc-425694-NIC-2
    20 µg
    $410.00

    Mouse Gprc5b encodes GPRC5B, an orphan G protein–coupled receptor–like membrane protein implicated in modulation of intracellular signaling cascades downstream of growth factor and cytokine cues. GPRC5B has been linked to regulation of MAPK/ERK and PI3K–AKT pathway activity, influencing cell proliferation, differentiation, and metabolic homeostasis in a tissue-dependent manner. In the nervous system and peripheral tissues, altered GPRC5B expression has been associated with inflammatory signaling, insulin sensitivity, and lipid handling, making it relevant to studies of obesity-associated phenotypes and cardiometabolic dysfunction. Its membrane localization and signaling context also support investigations of receptor-proximal network dynamics and transcriptional programs responsive to extracellular stimuli.

    GPRC5B Double Nickase Plasmid (m) consists of a matched pair of plasmids engineered for high-specificity editing of the Gprc5b locus in mouse cell lines. Each plasmid expresses a Cas9 D10A nickase and a distinct sgRNA targeting opposite DNA strands within Gprc5b. When directed to adjacent sites on opposite DNA strands, the two nickases generate offset single-strand nicks that together produce a staggered double-strand break, requiring coordinated on-target activity from both guides. The resulting DNA break is resolved by endogenous cellular repair pathways, most commonly through non-homologous end joining (NHEJ), leading to insertions or deletions that disrupt Gprc5b function. By requiring dual sgRNA engagement at the target locus, the double nicking approach enhances editing specificity and provides a complementary CRISPR strategy for applications where additional control over targeting precision is desired.

    To support efficient identification of edited cells, one plasmid encodes GFP for fluorescent visualization of transfected populations, while the companion plasmid carries a puromycin resistance gene for antibiotic selection. Together, these features support efficient enrichment of co-transfected populations and simplify the validation of Gprc5b-disrupted clones.

    For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.