Bidirectional electrogenic transport of peptides by the proton‐coupled carrier PEPT1 in Xenopus laevis oocytes: its asymmetry and symmetry
Open Access
- 1 October 2001
- journal article
- Published by Wiley in The Journal of Physiology
- Vol. 536 (2) , 495-503
- https://doi.org/10.1111/j.1469-7793.2001.0495c.xd
Abstract
1 The giant patch clamp technique in the inside-out configuration and the two-electrode voltage clamp technique were used to characterize the bidirectional transport properties of the proton-coupled peptide carrier PEPT1 expressed in Xenopus laevis oocytes. 2 The addition of the neutral dipeptide Gly-l-Gln to the cytoplasmic solution induced a net outward transport current in a membrane potential range between −80 and +60 mV, even in the absence of a pH gradient. 3 The concentration dependency of the outwardly directed transport currents followed Michaelis-Menten-type kinetics, with an apparent K0.5 of 3.28 mm (at pH 7.5 and +60 mV membrane potential). This apparent affinity is around fivefold lower than the apparent affinity measured for the inward transport mode (K0.5 of 0.70 mm (at pH 7.5 and −60 mV) under identical experimental conditions). 4 Apparent K0.5 values were strongly pH and potential dependent only on the external face for inward transport. The transport currents were potential dependent, but essentially pH independent for inward transport and only modestly altered by pH in the reverse direction. In addition to the membrane potential, the transmembrane substrate gradient acts as a driving force and contributes significantly to total transport currents. 5 The differences in apparent substrate affinity under identical experimental conditions suggest major differences in the conformation of the substrate binding pocket of PEPT1 when exposed to the external versus the internal face of the membrane. The lower affinity on the internal face allows the substrate to be released into the cytosolic compartment even in the absence of a proton-motive force. 6 Our study demonstrates for the first time that PEPT1 can transport dipeptides bidirectionally in an electrogenic and proton-coupled symport mode. When substrates are present on both sides of the membrane in sufficiently high concentrations, the direction and rate of transport are solely dependent on the membrane potential, and transport occurs symmetrically.Keywords
This publication has 20 references indexed in Scilit:
- Effects of glibenclamide on glycylsarcosine transport by the rat peptide transporters PEPT1 and PEPT2British Journal of Pharmacology, 1999
- Gat1 (Gaba:Na+:Cl−) Cotransport FunctionThe Journal of general physiology, 1999
- Delta-aminolevulinic acid transport by intestinal and renal peptide transporters and its physiological and clinical implications.Journal of Clinical Investigation, 1998
- Identification of a Potential Substrate Binding Domain in the Mammalian Peptide Transporters PEPT1 and PEPT2 Using PEPT1-PEPT2 and PEPT2-PEPT1 ChimerasBiochemical and Biophysical Research Communications, 1998
- Symmetry of H+ Binding to the Intra- and Extracellular Side of the H+-coupled Oligopeptide Cotransporter PepT1Journal of Biological Chemistry, 1997
- The human intestinal H+/oligopeptide cotransporter hPEPT1 transports differently-charged dipeptides with identical electrogenic propertiesBiochimica et Biophysica Acta (BBA) - Biomembranes, 1996
- Mechanisms of the Human Intestinal H+-coupled Oligopeptide Transporter hPEPT1Published by Elsevier ,1996
- Expression cloning of a cDNA from rabbit small intestine related to proton-coupled transport of peptides, ßlactam antibiotics and ACE-inhibitorsPflügers Archiv - European Journal of Physiology, 1994
- Regulation mechanisms of intracellular pH of Xenopus laevis oocyteBiochimica et Biophysica Acta (BBA) - Molecular Cell Research, 1992
- Internal pH of Xenopus oocytes: A study of the mechanism and role of pH changes during meiotic maturationDevelopmental Biology, 1983