pS594/pT597/pS599-SMO ( phospho-SMO Receptor Polyclonal Antibody )

pS594/pT597/pS599-SMO ( phospho-SMO Receptor Polyclonal Antibody )

Catalog Number:
A001456021TMA
Mfr. No.:
7TM0239A-IC
Price:
$720
  • Size:
    300 µl
    Quantity:
    Add to Cart:
      • Overview
        • Serine594/Threonine597/Serine599 (S362/S363/S364) is major GRK2 phosphorylation site of the SMO receptor. The pS594/pT597/pS599-SMO antibody detects phosphorylation in response to agonists. The pS594/pT597/pS599-SMO antibody can be used for detection of the subcellular location of phosphorylated SMO by immunocytochemistry or by immunohistochemistry in mouse brain.

          Please contact us at for specific academic pricing.

      • Properties
        • Host
          rabbit
          Antibody Type
          polyclonal
          Isotype
          IgG
          Reactivity
          human; mouse; rat
          Immunogen
          A synthetic phosphopeptide derived from mouse SMO around the phosphorylation site of Ser594/Thr597/Ser599.
          Purification
          Antigen affinity chromatography
          Formulation
          Liquid
          Storage
          Short-term storage at 4°C and long-term storage at -20°C
          Antigen
          SMOH | FZD11 | frizzled family member 11 | bnb | smoothened, frizzled class receptor | smoothened (UniProt:Q99835 (human), P56726 (mouse), P97698 (rat))

          * This product is intended for research use only.

      • Applications
        • Application
          WB; ICC; IHC
        • Application Dilutions
          Western Blot (WB) 1:1000
          Immunocytochemistry (ICC) 1:1000
          Immunohistochemistry (IHC) 1:1000
      • Reference
        • Walker MF, Zhang J, Steiner W, Ku PI, Zhu JF, Michaelson Z, Yen YC, Long AB, Casey MJ, Poddar A, Nelson IB, Arveseth CD, Nagel F, Clough R, LaPotin S, Kwan KM, Schulz S, Stewart RA, Tesmer JJG, Caspary T, Subramanian R, Ge X, Myers BR. A Ciliary SMOOTHENED-GRK2-PKA Signaling Pathway Initiates Hedgehog Signal Transduction. bioRxiv. 2023 May 11:2023.05.10.540226. doi: 10.1101/2023.05.10.540226. PMID: 37214942; PMCID: PMC10197709.

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