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>   首页   >   产品   >   一抗   >   神经科学   >   HOMER1 Antibody (N-term)   

HOMER1 Antibody (N-term)

Purified Rabbit Polyclonal Antibody (Pab)

     
  • 1 - HOMER1 Antibody (N-term) AP7302a
    Western blot analysis of HOMER1 antibody (N-term) (Cat.#AP7302a) in HepG2 cell line lysates (35ug/lane). HOMER1 (arrow) was detected using the purified Pab.
  • 14 - HOMER1 Antibody (N-term) AP7302a
    Formalin-fixed and paraffin-embedded human hepatocarcinoma with HOMER1 Antibody (N-term), which was peroxidase-conjugated to the secondary antibody, followed by DAB staining. This data demonstrates the use of this antibody for immunohistochemistry; clinical relevance has not been evaluated.
  • 4 - HOMER1 Antibody (N-term) AP7302a
    HOMER1 Antibody (N-term) (Cat.#AP7302a) flow cytometry analysis of HepG2 cells (bottom histogram) compared to a negative control cell (top histogram). FITC-conjugated goat-anti-rabbit secondary antibodies were used for the analysis.
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Product Information
Application
  • Applications Legend:
  • E=ELISA
  • WB=Western Blotting
  • IHC=Immunohistochemistry
  • IHC-P=Immunohistochemistry (Paraffin)
  • IP=Immunoprecipitation
  • IF=Immunofluorescence
  • IC=Immunochemistry
  • ICC=Immunocytochemistry
  • FC=Flow Cytometry
  • DB=Dot Blot
WB, IHC-P, FC, E
Primary Accession Q86YM7
Other Accession Q9Z214, Q9Z2Y3, Q2KJ56
Reactivity Human, Mouse
Predicted Bovine, Mouse, Rat
Host Rabbit
Clonality Polyclonal
Isotype Rabbit IgG
Calculated MW 40277 Da
Antigen Region 96-122 aa
Additional Information
Gene ID 9456
Other Names Homer protein homolog 1, Homer-1, HOMER1, SYN47
Target/Specificity This HOMER1 antibody is generated from rabbits immunized with a KLH conjugated synthetic peptide between 96-122 amino acids from the N-terminal region of human HOMER1.
Dilution WB~~1:1000
IHC-P~~1:100~500
FC~~1:10~50
E~~Use at an assay dependent concentration.
Format Purified polyclonal antibody supplied in PBS with 0.09% (W/V) sodium azide. This antibody is prepared by Saturated Ammonium Sulfate (SAS) precipitation followed by dialysis against PBS.
StorageMaintain refrigerated at 2-8°C for up to 2 weeks. For long term storage store at -20°C in small aliquots to prevent freeze-thaw cycles.
PrecautionsHOMER1 Antibody (N-term) is for research use only and not for use in diagnostic or therapeutic procedures.
Protein Information
Name HOMER1 (HGNC:17512)
Function Postsynaptic density scaffolding protein. Binds and cross- links cytoplasmic regions of GRM1, GRM5, ITPR1, DNM3, RYR1, RYR2, SHANK1 and SHANK3. By physically linking GRM1 and GRM5 with ER- associated ITPR1 receptors, it aids the coupling of surface receptors to intracellular calcium release. May also couple GRM1 to PI3 kinase through its interaction with AGAP2. Isoform 1 regulates the trafficking and surface expression of GRM5. Isoform 3 acts as a natural dominant negative, in dynamic competition with constitutively expressed isoform 1 to regulate synaptic metabotropic glutamate function. Isoform 3, may be involved in the structural changes that occur at synapses during long-lasting neuronal plasticity and development. Forms a high-order complex with SHANK1, which in turn is necessary for the structural and functional integrity of dendritic spines (By similarity). Negatively regulates T cell activation by inhibiting the calcineurin-NFAT pathway. Acts by competing with calcineurin/PPP3CA for NFAT protein binding, hence preventing NFAT activation by PPP3CA (PubMed:18218901).
Cellular Location Cytoplasm. Postsynaptic density. Synapse. Cell projection, dendritic spine {ECO:0000250|UniProtKB:Q9Z214}. Note=Isoform 1 inhibits surface expression of GRM5 causing it to be retained in the endoplasmic reticulum.
Research Areas

For Research Use Only. Not For Use In Diagnostic Procedures.

BACKGROUND

HOMER1 is a member of the homer family of dendritic proteins. Members of this family regulate group 1 metabotrophic glutamate receptor function.

REFERENCES

Sanna,S., Jackson,A.U. Nat. Genet. 40 (2), 198-203 (2008)
Dahl,J.P., Kampman,K.M. Psychiatr. Genet. 15 (4), 277-283 (2005)
Tu,J.C., Xiao,B. Neuron 23 (3), 583-592 (1999)

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