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Astor Scientific  |  SKU: ASTP7168

Human MAGOH (Protein Mago Nashi Homolog) - Recombinant Protein

Molecule: MAGOH
Species: Human
Expression System: E.coli
Expression Range: 1-146aa
$429.99 $549.99
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SDS-PAGE analysis of Human MAGOH (Protein Mago Nashi Homolog) - Recombinant Protein, showing >90% purity under 15% SDS-PAGE (Reduced)
Astor Scientific

Human MAGOH (Protein Mago Nashi Homolog) - Recombinant Protein

$429.99 $549.99

Product Overview

Product Name Recombinant Human MAGOH Protein
Product Overview This recombinant human MAGOH protein includes amino acids 1-146aa of the target gene is expressed in E.coli.The protein is supplied in lyophilized form and formulated in phosphate buffered saline (pH7.4) containing 0.01% sarcosyl, 5% trehaloseprior to lyophilization.
Target Uniprot Id P61326
Recommended Name Protein mago nashi homolog
Gene Name MAGOH
Synonyms Protein mago nashi homolog, MAGOH1, MAGOHA
Species Human
Predicted Molecular Mass 18.2 kDa
Expression System E.coli
Expression Range 1-146aa
Purity >90%
Formulation Lyophilized
Buffer Phosphate buffered saline (pH7.4) containing 0.01% sarcosyl, 5%Trehalose
Storage Condition 1. Store at -20°C/-80°C upon receipt, aliquoting is necessary for mutiple use. 2. Avoid repeated freeze-thaw cycles. 3. Store working aliquots at 4°C for up to one week. 4. In general, protein in liquid form is stable for up to 6 months at -20°C/-80°C. Protein in lyophilized powder form is stable for up to 12 months at -20°C/-80°C.
Reconstitution Instruction Briefly centrifuged the vial prior to opening to bring the contents to the bottom. Reconstitute protein in deionized sterile water to a concentration of 0.1-1.0 mg/mL. It is recommended to add 5-50% of glycerol (final concentration) and aliquot for long-term storage at -20°C/-80°C. The default final concentration of glycerol is 50%.
Applications Positive Control; Immunogen; SDS-PAGE; WB
Research Area Epigenetics And Nuclear Signaling
Target Function Required for pre-mRNA splicing as component of the spliceosome. Plays a redundant role with MAGOHB as core component of the exon junction complex (EJC) and in the nonsense-mediated decay (NMD) pathway. 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). The MAGOH-RBM8A heterodimer inhibits the ATPase activity of EIF4A3, thereby trapping the ATP-bound EJC core onto spliced mRNA in a stable conformation. The MAGOH-RBM8A heterodimer interacts with the EJC key regulator PYM1 leading to EJC disassembly in the cytoplasm and translation enhancement of EJC-bearing spliced mRNAs by recruiting them to the ribosomal 48S preinitiation complex. 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.
Subcellular Location Nucleus. Nucleus speckle. Cytoplasm.
Protein Family Mago nashi family
Tissue Specificity Ubiquitous.

Size

  • 100ug
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