Human EIF4A3/DDX48 protein (Recombinant) (C-His) (STJP006913)

SKU:
STJP006913
€410.63 - €1,796.88
Free Shipping
Processing The item has been added

Host: E. coli
Note: STRICTLY FOR FURTHER SCIENTIFIC RESEARCH USE ONLY (RUO). MUST NOT BE USED IN DIAGNOSTIC OR THERAPEUTIC APPLICATIONS.
Short Description : Recombinant-Human EIF4A3/DDX48-C-His protein was developed from e. coli and has a target region of C-His. For use in research applications.
Formulation: Lyophilized from a solution in PBS pH 7.4, 0.02% NLS, 1mM EDTA, 4% Trehalose, 1% Mannitol.
Storage Instruction: Use a manual defrost freezer and avoid repeated freeze thaw cycles. Store at 2 to 8°C for frequent use. Store at-20 to-80°C for twelve months from the date of receipt.
Gene Symbol: EIF4A3
Gene ID: 9775
Uniprot ID: IF4A3_HUMAN
Immunogen Region: Phe40-Ile411
Immunogen: Homo sapiens (Human)
Function ATP-dependent RNA helicase. Involved in pre-mRNA splicing as component of the spliceosome. Core component of the splicing-dependent multiprotein exon junction complex (EJC) deposited at splice junctions on mRNAs. The EJC is a dynamic structure consisting of core proteins and several peripheral nuclear and cytoplasmic associated factors that join the complex only transiently either during EJC assembly or during subsequent mRNA metabolism. The EJC marks the position of the exon-exon junction in the mature mRNA for the gene expression machinery and the core components remain bound to spliced mRNAs throughout all stages of mRNA metabolism thereby influencing downstream processes including nuclear mRNA export, subcellular mRNA localization, translation efficiency and nonsense-mediated mRNA decay (NMD). Its RNA-dependent ATPase and RNA-helicase activities are induced by CASC3, but abolished in presence of the MAGOH-RBM8A heterodimer, thereby trapping the ATP-bound EJC core onto spliced mRNA in a stable conformation. The inhibition of ATPase activity by the MAGOH-RBM8A heterodimer increases the RNA-binding affinity of the EJC. Involved in translational enhancement of spliced mRNAs after formation of the 80S ribosome complex. Binds spliced mRNA in sequence-independent manner, 20-24 nucleotides upstream of mRNA exon-exon junctions. Shows higher affinity for single-stranded RNA in an ATP-bound core EJC complex than after the ATP is hydrolyzed. Involved in the splicing modulation of BCL2L1/Bcl-X (and probably other apoptotic genes).specifically inhibits formation of proapoptotic isoforms such as Bcl-X(S).the function is different from the established EJC assembly. Involved in craniofacial development.
Protein Name Eukaryotic Initiation Factor 4a-Iii
Eif-4a-Iii
Eif4a-Iii
Atp-Dependent Rna Helicase Ddx48
Atp-Dependent Rna Helicase Eif4a-3
Dead Box Protein 48
Eukaryotic Initiation Factor 4a-Like Nuk-34
Eukaryotic Translation Initiation Factor 4a Isoform 3
Nuclear Matrix Protein 265
Nmp 265
Hnmp 265 Cleaved Into - Eukaryotic Initiation Factor 4a-Iii - N-Terminally Processed
Database Links Reactome: R-HSA-1169408
Reactome: R-HSA-159236
Reactome: R-HSA-429947
Reactome: R-HSA-72163
Reactome: R-HSA-72187
Reactome: R-HSA-73856
Reactome: R-HSA-9010553
Reactome: R-HSA-975957
Reactome: R-HSA-9820841
Reactome: R-HSA-9820865
Cellular Localisation Nucleus
Nucleus Speckle
Cytoplasm
Nucleocytoplasmic Shuttling Protein
Travels To The Cytoplasm As Part Of The Exon Junction Complex (Ejc) Bound To Mrna
Detected In Dendritic Layer As Well As The Nuclear And Cytoplasmic (Somatic) Compartments Of Neurons
Colocalizes With Stau1 And Fmr1 In Dendrites
Alternative Protein Names Eukaryotic Initiation Factor 4a-Iii protein
Eif-4a-Iii protein
Eif4a-Iii protein
Atp-Dependent Rna Helicase Ddx48 protein
Atp-Dependent Rna Helicase Eif4a-3 protein
Dead Box Protein 48 protein
Eukaryotic Initiation Factor 4a-Like Nuk-34 protein
Eukaryotic Translation Initiation Factor 4a Isoform 3 protein
Nuclear Matrix Protein 265 protein
Nmp 265 protein
Hnmp 265 Cleaved Into - Eukaryotic Initiation Factor 4a-Iii - N-Terminally Processed protein
EIF4A3 protein
DDX48 protein
KIAA0111 protein

Information sourced from Uniprot.org