Leucine-rich Repeat Containing G protein-coupled Receptor 4 - ExpressMAX™ Human GPCR ORF Clones

Leucine-rich Repeat Containing G protein-coupled Receptor 4 - ExpressMAX™ Human GPCR ORF Clones

Catalog Number:
MEV1268699CAN
Mfr. No.:
G0637-B; G0637-Plus
Price:
$579
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      • Overview
        • GPCRs play key roles in a variety of physiologic functions. Members of the leucine-rich GPCR (LGR) family, such as GPR48, have multiple N-terminal leucine-rich repeats (LRRs) and a 7-transmembrane domain. GPR48 deficiency causes developmental defects in several organs, including male reproductive tracts, gallbladder, cystic duct and bone.

          Includes:
          ExpressMAX™ GPCR ORF Clones (Cat. No. – B)
          – Vector as transformed Bacteria in stab culture or a Glycerol Stock format.
          Mammalian Transfection Kits (Cat. No. – PLUS)
          – 15 µg ExpressMAX™ Mammalian Expression Vector (1 mg/mL)
          – 0. 2 mL CANFAST™ Transfection Reagent

          Please contact us at for specific academic pricing.

      • Properties
        • Categories
          Human GPCR ORF Clones
          Other Properties
          Plasmid size: 8688 pb
          Promoter: PEF1α
          ORF Sequence (GenBank based): NM_018490
          Protein Sequence (SwissProt): Q9BXB1
          Bacterial Selection Antibiotics: Ampicillin
          Mammalian Selection Antibiotic: Neomycin
          Alternative names: LGR4 or BNMD17
          Storage
          ExpressMAX™ GPCR ORF Clones (-20 °C) and CANFAST™ (4 °C).

          * This product is developed, designed and sold exclusively for Research purposes and in vitro use only (RUO). The product was not tested for use in diagnostics or for drug development, nor is it suitable for administration to humans or animals.

      • Applications
        • Application Description
          Functional assays, as protein immobilization, cellular localization and other functional assays.
          High-throughput and large scale protein production and purification.
          Reverse transfection arrays and nucleic acid programmable protein arrays (NAPPA).

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