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The protein encoded by this gene is an interleukin 3 specific subunit of a heterodimeric cytokine receptor. The receptor is composed of a ligand specific alpha subunit and a signal transducing beta subunit shared by the receptors for interleukin 3 (IL3), colony stimulating factor 2 (CSF2/GM-CSF), and interleukin 5 (IL5).
Quaternary structure of the CD123 protein. The interleukin-3 receptor is a molecule found on cells which helps transmit the signal of interleukin-3, a soluble cytokine important in the immune system. The gene coding for the receptor is located in the pseudoautosomal region of the X and Y chromosomes.
There are two variants of the receptor, each encoded by a separate gene: CD120a - TNFR1 - TNFR superfamily member 1A; CD120b - TNFR2 - TNFR superfamily member 1B; TNFR1 is the receptor type responsible for mediation of TNF-alpha induced sickness behavior, [3] and is involved in neurotoxic processes. [4]
3815 16590 Ensembl ENSG00000157404 ENSMUSG00000005672 UniProt P10721 P05532 RefSeq (mRNA) NM_000222 NM_001093772 NM_001122733 NM_021099 RefSeq (protein) NP_000213 NP_001087241 NP_001116205 NP_066922 Location (UCSC) Chr 4: 54.66 – 54.74 Mb Chr 5: 75.74 – 75.82 Mb PubMed search Wikidata View/Edit Human View/Edit Mouse Proto-oncogene c-KIT is the gene encoding the receptor tyrosine kinase ...
Decoy receptor 1 (DCR1), TRAIL receptor 3 (TRAILR3) and tumor necrosis factor receptor superfamily member 10C (TNFRSF10C); a human cell surface receptor of the TNF-receptor superfamily; not capable of inducing apoptosis, and thought to function as an antagonistic receptor that protects cells from TRAIL-induced apoptosis
In humans, pDCs exhibit plasma cell morphology and express CD4, HLA-DR, CD123, blood-derived dendritic cell antigen-2 , Toll-like receptor (TLR) 7 and TLR9 within endosomal compartments. Expression of TLR 7 and TLR 9 allows pDCs to interact with viral and host nucleic acids.
The protein encoded by this gene is a member of the tumor necrosis factor receptor superfamily, which also contains TNFRSF1B. This protein is one of the major receptors for the tumor necrosis factor-alpha. This receptor can activate the transcription factor NF-κB, mediate apoptosis, and function as a regulator of inflammation.
IFNAR is a heteromeric cell surface receptor composed of two subunits, referred to as the low affinity subunit, IFNAR1, and the high affinity subunit, IFNAR2. [7] [8] Upon binding of type I interferons, IFNAR activates the JAK-STAT signalling pathway, along with MAPK, PI3K, and Akt signaling pathways. [2]