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PMID: 7592745 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Differential recognition of beta -lactam antibiotics by intestinal and renal peptide transporters, PEPT 1 and PEPT 2.

The Journal of biological chemistry ·Vol. 270 ·No. 43 ·1995-10-27 ·Pages 25672-7

Ganapathy ME, Brandsch M, Prasad PD, Ganapathy V, Leibach FH

Abstract

This study was initiated to determine if there are differences in the recognition of beta -lactam antibiotics as substrates between intestinal and renal peptide transporters, PEPT 1 and PEPT 2. Reverse transcription-coupled polymerase chain reaction and/or Northern blot analysis have established that the human intestinal cell line Caco-2 expresses PEPT 1 but not PEPT 2, whereas the rat proximal tubule cell line SKPT expresses PEPT 2 but not PEPT 1. Detailed kinetic analysis has provided unequivocal evidence for participation of PEPT 2 in SKPT cells in the transport of the dipeptide glycylsarcosine and the aminocephalosporin cephalexin. The substrate recognition pattern of PEPT 1 and PEPT 2 was studied with cefadroxil (a cephalosporin) and cyclacillin (a penicillin) as model substrates for the peptide transporters constitutively expressed in Caco-2 cells (PEPT 1) and SKPT cells (PEPT 2). Cyclacillin was 9-fold more potent than cefadroxil in competing with glycylsacosine for uptake via PEPT 1. In contrast, cefadroxil was 13-fold more potent than cyclacillin in competing with the dipeptide for uptake via PEPT 2. The substrate recognition pattern of PEPT 1 and PEPT 2 was also investigated using cloned human peptide transporters functionally expressed in HeLa cells. Expression of PEPT 1 or PEPT 2 in HeLa cells was found to induce H(+)-coupled cephalexin uptake in these cells. As was the case with Caco-2 cells and SKPT cells, the uptake of glycylsarcosine induced in HeLa cells by PEPT 1 cDNA and PEPT 2 cDNA was inhibitable by cyclacillin and cefadroxil. Again, the PEPT 1 cDNA-induced dipeptide uptake was inhibited more potently by cyclacillin than by cefadroxil, and the PEPT 2 cDNA-induced dipeptide uptake was inhibited more potently by cefadroxil than by cyclacillin. It is concluded that there are marked differences between the intestinal and renal peptide transporters in the recognition of beta -lactam antibiotics as substrates.

MeSH Terms
Animals Anti-Bacterial Agents/metabolism,pharmacology Biological Transport/drug effects Blotting, Northern Carrier Proteins/genetics,metabolism Cefadroxil/metabolism Cells, Cultured Cephalexin/metabolism Cephalosporins/metabolism Cyclacillin/metabolism Dipeptides/metabolism Dose-Response Relationship, Drug Humans Intestine, Small/cytology,metabolism Kidney/cytology,metabolism Penicillins/metabolism Peptide Transporter 1 Polymerase Chain Reaction RNA, Messenger/analysis Rats Recombinant Proteins/metabolism Symporters Vaccinia virus/genetics
Chemicals
Anti-Bacterial Agents Carrier Proteins Cephalosporins Dipeptides Penicillins Peptide Transporter 1 RNA, Messenger Recombinant Proteins SLC15A1 protein, human Slc15a1 protein, rat Symporters hydrogen-coupled oligopeptide transporter PepT2 Cefadroxil glycylsarcosine Cyclacillin Cephalexin
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Ganapathy M E
Department of Medicine, Medical College of Georgia, Augusta 30912, USA.
Brandsch M
Prasad P D
Ganapathy V
Leibach F H
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
1995-10-27
Pages
25672-7
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
NIDDK NIH HHS · DK 28389 · United States
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