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Mouse Beta-arrestin-2 (aa 1-410)
Arrb2 Swiss Prot#
Q91YI4
Arrb2 Protein names
Beta-arrestin-2 (Arrestin beta-2)
Arrb2 Gene names
Arrb2
Organism
Mouse
Arrb2 Entry name
ARRB2_MOUSE
Arrb2 Codon optimized cDNA(gene) Clone
Arrb2 Cat #
RPX1385
Tag
Arrb2 contains A 6x histidine tag
Arrb2 Formulation
Liquid
Arrb2 Storage
Storage at -20℃ to −80℃ Upon receipt. Avoid repeated freeze-thaw cycles.
Arrb2 Applications
Applications: 1. Codon-optimized cDNA(gene) sequence designed for protein production in both E.coli and Mammalian cell. The cDNA(gene) has been cloned into E.coli expression vector with 6x Histidine tag.2. May be used as RNAi assistance to restore the loss-of-function.
Recombinant Arrb2 Protein
Arrb2 Cat #
PX1385
Arrb2 Source
recombinant
Arrb2 Applications
Western Blot, SDS-Page or may be used for other applications determined by user
Arrb2 Purity
>90%, as determined by SDS-PAGE under reducing conditions
Arrb2 Activity
N/A
Tag
Arrb2 Contains A 6x histidine tag
Arrb2 Formulation
Liquid
Arrb2 Storage
;. Storage at -20℃ to −80℃ Upon receipt. Avoid repeated freeze-thaw cycles.
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Arrb2 family
Arrestin family
Arrb2 Subcellular locations
Cytoplasm. Nucleus. Cell membrane. Membrane > clathrin-coated pit. Cytoplasmic vesicle.
Arrb2 FUNCTION According to UniProtKB Swiss Prot
FUNCTION: Functions in regulating agonist-mediated G-protein coupled receptor (GPCR) signaling by mediating both receptor desensitization and resensitization processes. During homologous desensitization, beta-arrestins bind to the GPRK-phosphorylated receptor and sterically preclude its coupling to the cognate G-protein; the binding appears to require additional receptor determinants exposed only in the active receptor conformation. The beta-arrestins target many receptors for internalization by acting as endocytic adapters (CLASPs, clathrin-associated sorting proteins) and recruiting the GPRCs to the adapter protein 2 complex 2 (AP-2) in clathrin-coated pits (CCPs). However, the extent of beta-arrestin involvement appears to vary significantly depending on the receptor, agonist and cell type. Internalized arrestin-receptor complexes traffic to intracellular endosomes, where they remain uncoupled from G-proteins. Two different modes of arrestin-mediated internalization occur. Class A receptors, like ADRB2, OPRM1, ENDRA, D1AR and ADRA1B dissociate from beta-arrestin at or near the plasma membrane and undergo rapid recycling. Class B receptors, like AVPR2, AGTR1, NTSR1, TRHR and TACR1 internalize as a complex with arrestin and traffic with it to endosomal vesicles, presumably as desensitized receptors, for extended periods of time. Receptor resensitization then requires that receptor-bound arrestin is removed so that the receptor can be dephosphorylated and returned to the plasma membrane. Mediates endocytosis of CCR7 following ligation of CCL19 but not CCL21. Involved in internalization of P2RY1, P2RY4, P2RY6 and P2RY11 and ATP-stimulated internalization of P2RY2. Involved in phopshorylation-dependent internalization of OPRD1 and subsequent recycling or degradation. Involved in ubiquitination of IGF1R. Beta-arrestins function as multivalent adapter proteins that can switch the GPCR from a G-protein signaling mode that transmits short-lived signals from the plasma membrane via small molecule second messengers and ion channels to a beta-arrestin signaling mode that transmits a distinct set of signals that are initiated as the receptor internalizes and transits the intracellular compartment. Acts as signaling scaffold for MAPK pathways such as MAPK1/3 (ERK1/2) and MAPK10 (JNK3).
Arrb2 Sequence
DDBJ EMBL GenBank
Arrb2 3D structure
ModBase
Arrb2 interaction
STRING
Arrb2 Proteomic
PRIDE
Arrb2 Genome annotation
Ensembl GeneID KEGG UCSC
Arrb2 Organism specific
CTD MGI
Arrb2 Phylogenomics
eggNOG GeneTree HOGENOM HOVERGEN

InParanoid OrthoDB PhylomeDB OMA
Arrb2 Gene expression
Bgee ArrayExpress Genevestigator
Arrb2 Family and domain
InterPro PROSITE ProtoNet
FOR in vitro RESEARCH USE ONLY