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SLC5A10 is a member of the sodium\\/glucose transporter family. Additionally we are shipping and many more products for this protein.
Showing 8 out of 11 products:
Data show fructose-induced hepatic steatosis was exacerbated in the SGLT5-deficient mice
Na+-dependent glucose cotransporters (SGLT)5 mRNA was found predominantly in bovine kidney, only at very low levels in bovine testes, skeletal muscle, and spleen
The segmental differences in porcine glucose transport characteristics may be based on direct or indirect modulations of SGLT1 (show SLC5A1 Antibodies) activity.
The increased expression of SGLT1 (show SLC5A1 Antibodies) in the jejunum by phytase supplementation implies that phytase alleviated the negative effects of phytic acid partly through increased expression of SGLT1 (show SLC5A1 Antibodies).
neonates have high intestinal apical SGLT1 (show SLC5A1 Antibodies) uptake activity by abundantly expressing SGLT1 (show SLC5A1 Antibodies) protein in epithelia and on apical membrane along the entire crypt-villus axis in association with enhanced protein translational control mechanisms in crypt cells.
In accord with a rise in methyl alpha-D-glucopyranoside uptake activity, the mRNA and protein levels of SGLT1 (show SLC5A1 Antibodies) were apparently up-regulated in the presence of apoE3
Expression of SLGT1 was evaluated in LLC-PK1 cells grown on porous membranes for the development of an artificial kidney.
SGLT-5 as a kidney mannose transporter
This gene is a member of the sodium/glucose transporter family. Members of this family are sodium-dependent transporters and can be divided into two subfamilies based on sequence homology, one that co-transports sugars and the second that transports molecules such as ascorbate, choline, iodide, lipoate, monocaroboxylates, and pantothenate. The protein encoded by this gene has the highest affinity for mannose and has been reported to be most highly expressed in the kidney. This protein may function as a kidney-specific, sodium-dependent mannose and fructose co-transporter. Alternative splicing results in multiple transcript variants that encode different protein isoforms.
sodium/glucose cotransporter 5
, solute carrier family 5 (sodium/glucose cotransporter), member 10
, sodium/glucose cotransporter 5-like
, Na(+)/glucose cotransporter 5
, solute carrier family 5 member 10
, Na+/glucose cotransporter-related protein