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AntibodySystem
Recombinant Proteins
Recombinant Human SLC17A5 Protein is a highly purified and biologically active protein that is produced through recombinant DNA technology. This protein is a member of the solute carrier family 17 (SLC17) and is also known as the sodium-dependent phosphate transport protein 3 (NPT3). It plays a crucial role in the transport of inorganic phosphate across cell membranes, making it an essential protein for various physiological processes.
The recombinant protein is composed of 492 amino acids and has a molecular weight of approximately 54 kDa. It contains 12 transmembrane domains and two cytoplasmic domains, with a predicted glycosylation site at position 147. The protein has a high degree of homology with other members of the SLC17 family, particularly with SLC17A3 and SLC17A4. The recombinant protein is expressed in mammalian cells and undergoes proper post-translational modifications, resulting in a fully functional protein with native-like structure and activity.
Recombinant Human SLC17A5 Protein functions as a sodium-dependent phosphate transporter, specifically transporting inorganic phosphate (Pi) across cell membranes. This process is crucial for maintaining cellular phosphate homeostasis, as Pi is an essential component for various biochemical reactions, including energy metabolism, nucleic acid synthesis, and cell signaling. The activity of this protein is regulated by the concentration of extracellular Pi and is also influenced by hormones such as parathyroid hormone and fibroblast growth factor 23.
Recombinant Human SLC17A5 Protein has various applications in both research and clinical settings. Some of the key applications include:
Recombinant Human SLC17A5 Protein is a crucial protein involved in the transport of inorganic phosphate across cell membranes. It is produced through recombinant DNA technology and has a native-like structure and activity. The protein has various applications in research and clinical settings, making it an essential tool for studying phosphate transport and related diseases.
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