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Prolactin Receptor Protein, Human, Recombinant (His)

TargetMol | SPR
Catalog No. TMPY-01053

Prolactin Receptor Protein, Human, Recombinant (His) is expressed in HEK293 mammalian cells with His tag. The predicted molecular weight is 26 kDa and the accession number is P16471-1.

Prolactin Receptor Protein, Human, Recombinant (His)

Prolactin Receptor Protein, Human, Recombinant (His)

TargetMol | SPR
Catalog No. TMPY-01053
Prolactin Receptor Protein, Human, Recombinant (His) is expressed in HEK293 mammalian cells with His tag. The predicted molecular weight is 26 kDa and the accession number is P16471-1.
Pack SizePriceUSA WarehouseGlobal WarehouseQuantity
5 μg$487-10 days7-10 days
10 μg$757-10 days7-10 days
20 μg$1187-10 days7-10 days
50 μg$2297-10 days7-10 days
100 μg$386-In Stock
200 μg$6827-10 days7-10 days
500 μg$1,4307-10 days7-10 days
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In Stock Estimated shipping dateUSA Warehouse [1-2 days] Global Warehouse [5-7 days]
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Product Information

Biological Activity
Immobilized Recombinant Human GH1 / Growth hormone 1 Protein at 2 μg/mL (100 μL/well) can bind Recombinant Human PRLR / Prolactin Receptor Protein (His Tag) , the EC50 is 20-60 ng/mL.
Description
Prolactin Receptor Protein, Human, Recombinant (His) is expressed in HEK293 mammalian cells with His tag. The predicted molecular weight is 26 kDa and the accession number is P16471-1.
Species
Human
Expression System
HEK293 Cells
TagC-His
Accession NumberP16471-1
Synonyms
prolactin receptor,PRLR,MFAB,hPRLrI,HPRL
Construction
A DNA sequence encoding the extracellular domain of human PRLR (NP_000940.1) (Met 1-Asp 234) was fused with a polyhistidine tag at the C-terminus. Predicted N terminal: Gln 25
Protein Purity
> 98 % as determined by SDS-PAGE
Prolactin Receptor Protein, Human, Recombinant (His)
Molecular Weight26 kDa (predicted); 36-38 kDa (reducing condition, due to glycosylation)
Endotoxin< 1.0 EU/μg of the protein as determined by the LAL method.
FormulationLyophilized from a solution filtered through a 0.22 μm filter, containing PBS, pH 7.4. Typically, a mixture containing 5% to 8% trehalose, mannitol, and 0.01% Tween 80 is incorporated as a protective agent before lyophilization.
Reconstitution
A Certificate of Analysis (CoA) containing reconstitution instructions is included with the products. Please refer to the CoA for detailed information.
Stability & Storage
It is recommended to store recombinant proteins at -20°C to -80°C for future use. Lyophilized powders can be stably stored for over 12 months, while liquid products can be stored for 6-12 months at -80°C. For reconstituted protein solutions, the solution can be stored at -20°C to -80°C for at least 3 months. Please avoid multiple freeze-thaw cycles and store products in aliquots.
ShippingIn general, Lyophilized powders are shipping with blue ice.
Research Background
Prolactin receptor (PRLR) is a single-pass transmembrane receptor belonging to the type I cytokine receptor superfamily, and contains two fibronectin type-III domains. All class 1 ligands activate their respective receptors by clustering mechanisms. Ligand binding results in the transmembrane PRLR dimerization, followed by phosphorylation and activation of the molecules involved in the signaling pathways, such as Jak-STAT, Ras/Raf/MAPK. The PRLR contains no intrinsic tyrosine kinase cytoplasmic domain but associates with a cytoplasmic tyrosine kinase, JAK2. PRLR mainly serves as the receptor for the pituitary hormone prolactin (PRL), a secreted hormone that affects reproduction and homeostasis in vertebrates. PRLR can be regulated by an interplay of two different mechanisms, PRL or ovarian steroid hormones independently or in combination in a tissue-specific manner. The role of the hormone prolactin (PRL) in the pathogenesis of breast cancer is mediated by its cognate receptor (PRLR). Ubiquitin-dependent degradation of the PRLR that negatively regulates PRL signaling is triggered by PRL-mediated phosphorylation of PRLR on Ser349 followed by the recruitment of the beta-transducin repeats-containing protein (beta-TrCP) ubiquitin-protein isopeptide ligase. which altered PRLR stability may directly influence the pathogenesis of breast cancer.

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