Mouse anti-Human Wingless Type MMTV Integration Site Family Monoclonal Antibody | anti-WNT3A antibody
Wingless Type MMTV Integration Site Family, Member 3A (WNT3A) Monoclonal Antibody
Immunohistochemistry in formalin fixed frozen section: 1:50-500
Enzyme-linked Immunosorbent Assay: 1:100-200
NCBI and Uniprot Product Information
NCBI Description
The WNT gene family consists of structurally related genes which encode secreted signaling proteins. These proteins have been implicated in oncogenesis and in several developmental processes, including regulation of cell fate and patterning during embryogenesis. This gene is a member of the WNT gene family. It encodes a protein which shows 96% amino acid identity to mouse Wnt3A protein, and 84% to human WNT3 protein, another WNT gene product. This gene is clustered with WNT14 gene, another family member, in chromosome 1q42 region. [provided by RefSeq, Jul 2008]
Uniprot Description
WNT3A: Ligand for members of the frizzled family of seven transmembrane receptors. Wnt-3 and Wnt-3a play distinct roles in cell-cell signaling during morphogenesis of the developing neural tube. Interacts with PORCN. Interacts with APCDD1 and WLS. Component of the Wnt-Fzd-LRP5-LRP6 signaling complex that contains a WNT protein, a FZD protein and LRP5 or LRP6. Interacts directly in the complex with LRP6. Moderately expressed in placenta and at low levels in adult lung, spleen, and prostate. Belongs to the Wnt family.
Protein type: Secreted; Secreted, signal peptide
Chromosomal Location of Human Ortholog: 1q42.13
Cellular Component: cell surface; early endosome membrane; endoplasmic reticulum lumen; extracellular region; extracellular space; Golgi lumen; plasma membrane; proteinaceous extracellular matrix
Molecular Function: frizzled binding; frizzled-2 binding; protein binding; protein domain specific binding; receptor binding; receptor ligand activity; transcription coactivator activity
Biological Process: axon guidance; cell proliferation in forebrain; cell proliferation in midbrain; COP9 signalosome assembly; dorsal/ventral neural tube patterning; extracellular matrix organization; heart looping; hemopoiesis; hippocampus development; in utero embryonic development; inner ear morphogenesis; mammary gland development; negative regulation of axon extension involved in axon guidance; negative regulation of fat cell differentiation; negative regulation of neurogenesis; neuron differentiation; osteoblast differentiation; palate development; paraxial mesodermal cell fate commitment; positive regulation of B cell proliferation; positive regulation of cell proliferation; positive regulation of collateral sprouting in the absence of injury; positive regulation of cysteine-type endopeptidase activity involved in apoptotic process; positive regulation of cytokine production; positive regulation of mesodermal cell fate specification; positive regulation of peptidyl-serine phosphorylation; positive regulation of protein binding; positive regulation of protein phosphorylation; positive regulation of receptor internalization; positive regulation of skeletal muscle tissue development; positive regulation of transcription factor activity; positive regulation of transcription from RNA polymerase II promoter; positive regulation of transcription, DNA-templated; spinal cord association neuron differentiation; Wnt receptor signaling pathway through beta-catenin; Wnt signaling pathway; Wnt signaling pathway involved in forebrain neuroblast division