Product Name
frizzled homolog 4 (Drosophila) (FZD4), ELISA Kit
Full Product Name
Mouse Frizzled-4, FZD4 ELISA Kit
Product Synonym Names
Mouse Frizzled-4 (FZD4) ELISA kit; CD344; EVR1; FEVR; FZD4S; Fz-4; FzE4; GPCR; MGC34390; WNT receptor frizzled-4; frizzled 4; frizzled homolog 4 (Drosophila)
Product Gene Name
FZD4 elisa kit
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Research Use Only
For Research Use Only. Not for use in diagnostic procedures.
Request for Current Manual Insert
Request Current Manual
3D Structure
ModBase 3D Structure for Q61088
Preparation and Storage
Store all reagents at 2-8 degree C
Product Note
Select online data sheet information is drawn from bioinformatics databases, occasionally resulting in ambiguous or non-relevant product information. It is the responsibility of the customer to review, verify, and evaluate the information to make sure it matches their requirements before purchasing the kit. Our ELISA Kit assays are dynamic research tools and sometimes they may be updated and improved. If the format of this assay is important to you then please request the current manual or contact our technical support team with a presales inquiry before placing an order. We will confirm the current details of the assay. We cannot guarantee the sample manual posted online is the most current manual.
Other Notes
Small volumes of FZD4 elisa kit vial(s) may occasionally become entrapped in the seal of the product vial during shipment and storage. If necessary, briefly centrifuge the vial on a tabletop centrifuge to dislodge any liquid in the container`s cap. Certain products may require to ship with dry ice and additional dry ice fee may apply.
Searchable Terms for FZD4 purchase
MBS9334292 is a ready-to-use microwell, strip plate ELISA (enzyme-linked immunosorbent assay) Kit for analyzing the presence of the frizzled homolog 4 (Drosophila) (FZD4) ELISA Kit target analytes in
biological samples. The concentration gradients of the kit standards or positive controls render a theoretical kit detection range in biological research samples containing FZD4. The ELISA analytical biochemical technique of the MBS9334292 kit is based on FZD4 antibody-FZD4 antigen interactions (immunosorbency) and an HRP colorimetric detection system to detect FZD4 antigen targets in samples. The ELISA Kit is designed to detect native, not recombinant, FZD4. Appropriate sample types may include undiluted body fluids and/or tissue homogenates, secretions. Quality control assays assessing reproducibility identified the intra-assay CV (%) and inter-assay CV(%).
NCBI/Uniprot data below describe general gene information for FZD4. It may not necessarily be applicable to this product.
NCBI Accession #
NP_032081.3
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NCBI GenBank Nucleotide #
NM_008055.4
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UniProt Primary Accession #
Q61088
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UniProt Related Accession #
Q61088[Other Products]
Molecular Weight
60,143 Da
NCBI Official Full Name
frizzled-4
NCBI Official Synonym Full Names
frizzled homolog 4 (Drosophila)
NCBI Official Symbol
Fzd4??[Similar Products]
NCBI Official Synonym Symbols
Fz4
??[Similar Products]
NCBI Protein Information
frizzled-4; fz-4; mFz4
UniProt Protein Name
Frizzled-4
UniProt Synonym Protein Names
CD_antigen: CD344
UniProt Gene Name
Fzd4??[Similar Products]
UniProt Synonym Gene Names
Fz-4; mFz4??[Similar Products]
UniProt Entry Name
FZD4_MOUSE
UniProt Comments for FZD4
FZD4: Receptor for Wnt proteins. Most of frizzled receptors are coupled to the beta-catenin (CTNNB1) canonical signaling pathway, which leads to the activation of disheveled proteins, inhibition of GSK-3 kinase, nuclear accumulation of beta-catenin (CTNNB1) and activation of Wnt target genes. Plays a critical role in retinal vascularization by acting as a receptor for Wnt proteins and norrin (NDP). In retina, it can be both activated by Wnt protein-binding, but also by a Wnt-independent signaling via binding of norrin (NDP), promoting in both cases beta-catenin (CTNNB1) accumulation and stimulation of LEF/TCF-mediated transcriptional programs. A second signaling pathway involving PKC and calcium fluxes has been seen for some family members, but it is not yet clear if it represents a distinct pathway or if it can be integrated in the canonical pathway, as PKC seems to be required for Wnt-mediated inactivation of GSK-3 kinase. Both pathways seem to involve interactions with G-proteins. May be involved in transduction and intercellular transmission of polarity information during tissue morphogenesis and/or in differentiated tissues. Defects in FZD4 are the cause of vitreoretinopathy exudative type 1 (EVR1); also known as autosomal dominant familial exudative vitreoretinopathy (FEVR) or Criswick- Schepens syndrome. EVR1 is a disorder of the retinal vasculature characterized by an abrupt cessation of growth of peripheral capillaries, leading to an avascular peripheral retina. This may lead to compensatory retinal neovascularization, which is thought to be induced by hypoxia from the initial avascular insult. New vessels are prone to leakage and rupture causing exudates and bleeding, followed by scarring, retinal detachment and blindness. Clinical features can be highly variable, even within the same family. Patients with mild forms of the disease are asymptomatic, and their only disease-related abnormality is an arc of avascular retina in the extreme temporal periphery. Belongs to the G-protein coupled receptor Fz/Smo family.
Protein type: Membrane protein, multi-pass; Receptor, GPCR; GPCR, Fz/Smo family; Membrane protein, integral
Cellular Component: cell surface; membrane; plasma membrane; integral to membrane; intercellular junction
Molecular Function: G-protein coupled receptor activity; Wnt-protein binding; signal transducer activity; protein binding; Wnt receptor activity; transmembrane receptor activity; protein homodimerization activity; protein heterodimerization activity; ubiquitin protein ligase binding; cytokine binding; PDZ domain binding
Biological Process: blood vessel development; positive regulation of JNK activity; Wnt receptor signaling pathway; positive regulation of transcription, DNA-dependent; multicellular organismal development; Wnt receptor signaling pathway through beta-catenin; signal transduction; progesterone secretion; locomotion during locomotory behavior; G-protein coupled receptor protein signaling pathway; Wnt receptor signaling pathway, calcium modulating pathway; cell surface receptor linked signal transduction; sensory perception of sound; luteinization; regulation of vascular endothelial growth factor receptor signaling pathway; positive regulation of transcription factor activity; vasculogenesis
Research Articles on FZD4
1. The data reveal both cell-autonomous and cell-nonautonomous effects, and they imply a central role for Norrin/Fz4 signaling in central nervous system vascular development and in the maintenance of the blood brain barrier/blood retina barrier state.
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