Metabolic intermediates, such as succinate and citrate, regulate important processes ranging from energy metabolism to fatty acid synthesis. Cytosolic concentrations of these metabolites are controlled, in part, by members of the SLC13 gene family. The molecular mechanism underlying Na(+)-coupled di- and tricarboxylate transport by this family is understood poorly. The human Na(+)/dicarboxylate cotransporter NaDC3 (SLC13A3) is found in various tissues, including the kidney, liver, and brain. In addition to citric acid cycle intermediates such as α-ketoglutarate and succinate, NaDC3 transports other compounds into cells, including N-acetyl aspartate, mercaptosuccinate, and glutathione, in keeping with its dual roles in cell nutrition and det...
The Na+-dependent dicarboxylate transporter from Vibrio cholerae (VcINDY) is a prototype for the div...
The SLC13 gene family consist of five sequence-related members that have been identified in a variet...
The Na()/dicarboxylate cotransporter, NaDC-1, and the Na/sulfate cotransporter, NaSi-1, share 43% se...
Metabolic intermediates, such as succinate and citrate, regulate important processes ranging from en...
The SLC13 family in humans and other mammals consists of sodium-coupled transporters for anionic sub...
In mammals, citric acid cycle intermediates play a key role in regulating various metabolic processe...
Transporters from the SLC13 family couple the transport of two to four Na<sup>+</sup> ions with a di...
In mammals, citric acid cycle intermediates play a key role in regulating various metabolic processe...
The SLC13 transporter family, whose members play key physiological roles in the regulation of fatty ...
The SdcF transporter from Bacillus licheniformis (gene BL02343) is a member of the divalent anion so...
The SLC13 family comprises five genes (SLC13A1, SLC13A2, SLC13A3, SLC13A4, and SLC13A5) encoding str...
AbstractThe current secondary structure model of the Na+/dicarboxylate cotransporter, NaDC-1, contai...
Human NaDC3 is one of the five members of the “solute carrier 13 (SLC13)” gene family, all of them c...
AbstractCitric acid cycle intermediates are absorbed from the gastrointestinal tract through carrier...
AbstractThe Na+/dicarboxylate cotransporters from mouse (mNaDC1) and rabbit (rbNaDC1) differ in thei...
The Na+-dependent dicarboxylate transporter from Vibrio cholerae (VcINDY) is a prototype for the div...
The SLC13 gene family consist of five sequence-related members that have been identified in a variet...
The Na()/dicarboxylate cotransporter, NaDC-1, and the Na/sulfate cotransporter, NaSi-1, share 43% se...
Metabolic intermediates, such as succinate and citrate, regulate important processes ranging from en...
The SLC13 family in humans and other mammals consists of sodium-coupled transporters for anionic sub...
In mammals, citric acid cycle intermediates play a key role in regulating various metabolic processe...
Transporters from the SLC13 family couple the transport of two to four Na<sup>+</sup> ions with a di...
In mammals, citric acid cycle intermediates play a key role in regulating various metabolic processe...
The SLC13 transporter family, whose members play key physiological roles in the regulation of fatty ...
The SdcF transporter from Bacillus licheniformis (gene BL02343) is a member of the divalent anion so...
The SLC13 family comprises five genes (SLC13A1, SLC13A2, SLC13A3, SLC13A4, and SLC13A5) encoding str...
AbstractThe current secondary structure model of the Na+/dicarboxylate cotransporter, NaDC-1, contai...
Human NaDC3 is one of the five members of the “solute carrier 13 (SLC13)” gene family, all of them c...
AbstractCitric acid cycle intermediates are absorbed from the gastrointestinal tract through carrier...
AbstractThe Na+/dicarboxylate cotransporters from mouse (mNaDC1) and rabbit (rbNaDC1) differ in thei...
The Na+-dependent dicarboxylate transporter from Vibrio cholerae (VcINDY) is a prototype for the div...
The SLC13 gene family consist of five sequence-related members that have been identified in a variet...
The Na()/dicarboxylate cotransporter, NaDC-1, and the Na/sulfate cotransporter, NaSi-1, share 43% se...