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Pharm Res
2007 Mar 01;243:575-84. doi: 10.1007/s11095-006-9176-1.
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Transport of nicotinate and structurally related compounds by human SMCT1 (SLC5A8) and its relevance to drug transport in the mammalian intestinal tract.
Gopal E, Miyauchi S, Martin PM, Ananth S, Roon P, Smith SB, Ganapathy V.
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PURPOSE. To examine the involvement of human SMCT1, a Na+-coupled transporter for short-chain fatty acids, in the transport of nicotinate/structural analogs and monocarboxylate drugs, and to analyze its expression in mouse intestinal tract. We expressed human SMCT1 in X. laevis oocytes and monitored its function by [14C]nicotinate uptake and substrate-induced inward currents. SMCT1 expression in mouse intestinal tract was examined by immunofluorescence. [14C]Nicotinate uptake was several-fold higher in SMCT1-expressing oocytes than in water-injected oocytes. The uptake was inhibited by short-chain/medium-chain fatty acids and various structural analogs of nicotinate. Exposure of SMCT1-expressing oocytes to nicotinate induced Na+-dependent inward currents. Measurements of nicotinate flux and associated charge transfer into oocytes suggest a Na+:nicotinate stoichiometry of 2:1. Monocarboxylate drugs benzoate, salicylate, and 5-aminosalicylate are also transported by human SMCTI. The transporter is expressed in the small intestine as well as colon, and the expression is restricted to the lumen-facing apical membrane of intestinal and colonic epithelial cells. Human SMCTI transports not only nicotinate and its structural analogs but also various monocarboxylate drugs. The transporter is expressed on the luminal membrane of the epithelial cells lining the intestinal tract. SMCT1 may participate in the intestinal absorption of monocarboxylate drugs.
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17245649 ???displayArticle.link???Pharm Res
Casteels,
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2003,
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2004,
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,
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2003,
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1997,
Pubmed
,
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2005,
Pubmed Gisbert,
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Sodium-coupled and electrogenic transport of B-complex vitamin nicotinic acid by slc5a8, a member of the Na/glucose co-transporter gene family.
2005,
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,
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,
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2002,
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2003,
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2004,
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,
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2002,
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Interaction of ibuprofen and other structurally related NSAIDs with the sodium-coupled monocarboxylate transporter SMCT1 (SLC5A8).
2006,
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,
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SLC5A8, a sodium transporter, is a tumor suppressor gene silenced by methylation in human colon aberrant crypt foci and cancers.
2003,
Pubmed MacDermott,
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2000,
Pubmed Martin,
Identity of SMCT1 (SLC5A8) as a neuron-specific Na+-coupled transporter for active uptake of L-lactate and ketone bodies in the brain.
2006,
Pubmed
,
Xenbase Miyauchi,
Functional identification of SLC5A8, a tumor suppressor down-regulated in colon cancer, as a Na(+)-coupled transporter for short-chain fatty acids.
2004,
Pubmed
,
Xenbase Panayotova-Heiermann,
Kinetics of steady-state currents and charge movements associated with the rat Na+/glucose cotransporter.
1995,
Pubmed
,
Xenbase Paroder,
Na(+)/monocarboxylate transport (SMCT) protein expression correlates with survival in colon cancer: molecular characterization of SMCT.
2006,
Pubmed
,
Xenbase Regueiro,
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2004,
Pubmed Rodriguez,
Identification and characterization of a putative human iodide transporter located at the apical membrane of thyrocytes.
2002,
Pubmed Schuette,
Renal transport and metabolism of nicotinic acid.
1986,
Pubmed Thangaraju,
c/ebpdelta Null mouse as a model for the double knock-out of slc5a8 and slc5a12 in kidney.
2006,
Pubmed Veech,
Ketone bodies, potential therapeutic uses.
2001,
Pubmed Wang,
Structure, function, and genomic organization of human Na(+)-dependent high-affinity dicarboxylate transporter.
2000,
Pubmed
,
Xenbase Xu,
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2004,
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