Anti-SLC5A1 nanobody [SAA0963] (STJN000149)

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STJN000149
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Host: Alpaca
Applications: ELISA
Reactivity: Human
Note: STRICTLY FOR FURTHER SCIENTIFIC RESEARCH USE ONLY (RUO). MUST NOT BE USED IN DIAGNOSTIC OR THERAPEUTIC APPLICATIONS.
Short Description : Alpaca monoclonal nanobody anti-Sodium/Glucose Cotransporter 1 is suitable for use in ELISA research applications.
Clonality : Monoclonal
Clone ID : SAA0963
Conjugation: Unconjugated
Isotype: VHH-8His-Cys-tag
Formulation: 0.01M PBS, pH 7.4.
Purification: Purified by Nickel column.
Concentration: 1 mg/mL
Storage Instruction: Use a manual defrost freezer and avoid repeated freeze-thaw cycles. Store at 4°C short term (1-2 weeks). Store at-20°C 12 months. Store at-80°C long term.
Gene Symbol: SLC5A1
Gene ID: 6523
Uniprot ID: SC5A1_HUMAN
Post Translational Modifications N-glycosylation is not necessary for the cotransporter function.
Function Electrogenic Na(+)-coupled sugar symporter that actively transports D-glucose or D-galactose at the plasma membrane, with a Na(+) to sugar coupling ratio of 2:1. Transporter activity is driven by a transmembrane Na(+) electrochemical gradient set by the Na(+)/K(+) pump. Has a primary role in the transport of dietary monosaccharides from enterocytes to blood. Responsible for the absorption of D-glucose or D-galactose across the apical brush-border membrane of enterocytes, whereas basolateral exit is provided by GLUT2. Additionally, functions as a D-glucose sensor in enteroendocrine cells, triggering the secretion of the incretins GCG and GIP that control food intake and energy homeostasis. Together with SGLT2, functions in reabsorption of D-glucose from glomerular filtrate, playing a nonredundant role in the S3 segment of the proximal tubules. Transports D-glucose into endometrial epithelial cells, controlling glycogen synthesis and nutritional support for the embryo as well as the decidual transformation of endometrium prior to conception. Acts as a water channel enabling passive water transport across the plasma membrane in response to the osmotic gradient created upon sugar and Na(+) uptake. Has high water conductivity, comparable to aquaporins, and therefore is expected to play an important role in transepithelial water permeability, especially in the small intestine.
Protein Name Sodium/Glucose Cotransporter 1
Na(+/Glucose Cotransporter 1
High Affinity Sodium-Glucose Cotransporter
Solute Carrier Family 5 Member 1
Database Links Reactome: R-HSA-189200
Reactome: R-HSA-5656364
Reactome: R-HSA-8981373
Cellular Localisation Apical Cell Membrane
Multi-Pass Membrane Protein
Alternative Nanobody Names Anti-Sodium/Glucose Cotransporter 1 nanobody
Anti-Na(+/Glucose Cotransporter 1 nanobody
Anti-High Affinity Sodium-Glucose Cotransporter nanobody
Anti-Solute Carrier Family 5 Member 1 nanobody
Anti-SLC5A1 nanobody
Anti-NAGT nanobody
Anti-SGLT1 nanobody

Information sourced from Uniprot.org