Heterogeneity of l-alanine transport systems in brush-border membrane vesicles from rat placenta during late gestation
- 15 November 1992
- journal article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 288 (1) , 47-53
- https://doi.org/10.1042/bj2880047
Abstract
The placental uptake of L-alanine was studied by using purified brush-border membrane vesicles from rat trophoblasts. Saturation curves were carried out at 37 degrees C in buffers containing 100 mM (zero-trans)-NaSCN, -NaCl, -KSCN, -KCl, or -N-methyl-D-glucamine gluconate. The uncorrected uptake results were fitted by non-linear regression analysis to an equation involving one diffusional component either one or two saturable Michaelian transport terms. In the presence of NaCl, two distinct L-alanine transport systems were distinguished, named respectively System 1 (S-1; Vm1 about 760 pmol/s per mg of protein; KT1 = 0.5 mM) and System 2 (S-2; Vm2 about 1700 pmol/s per mg; KT2 = 9 mM). In contrast, in the presence of K+ (KCl = KSCN) or in the absence of any alkali-metal ions (N-methyl-D-glucamine gluconate), only one saturable system was apparent, which we identify as S-2. When Na+ is present, S-1, but not S-2, appears to be rheogenic, since its maximal transport capacity significantly increases in the presence of an inside-negative membrane potential, created either by replacing Cl- with the permeant anion thiocyanate (NaSCN > NaCl) or by applying an appropriate K+ gradient and valinomycin. alpha-(Methylamino)isobutyrate (methyl-AIB) appears to be a substrate of S-1, but not of S-2. For reasons that remain to be explained, however, methyl-AIB inhibits S-2. We conclude that S-1 represents a truly Na(+)-dependent mechanism, where Na+ behaves as an obligatory activator, whereas S-2 cannot discriminate between Na+ and K+, although its activity is higher in the presence of alkali-metal ions than in their absence (Na+ = K+ > N-methyl-D-glucammonium ion). S-2 appears to be fully developed 2 days before birth, whereas S-1 undergoes a capacity-type activation between days 19.5 and 21.5 of gestation, i.e. its apparent Vmax. nearly doubles, whereas its KT remains constant.Keywords
This publication has 28 references indexed in Scilit:
- A four-proton-families model for pH-dependent enzyme activation: Application to intestinal brush border sucraseMathematical Biosciences, 1992
- Characterization of amino acid transport systems in human placental brush-border membrane vesiclesBiochimica et Biophysica Acta (BBA) - Biomembranes, 1987
- Characterization of tryptophan transport in human placental brush-border membrane vesiclesBiochemical Journal, 1986
- Organic ion transport during seven decades the amino acidsBiochimica et Biophysica Acta (BBA) - Reviews on Biomembranes, 1984
- Red-cell amino acid transport. Evidence for the presence of system ASC in mature human red blood cellsBiochemical Journal, 1983
- Kinetics of the sodium/beta-methyl-D-glucoside co-transport system in the guinea-pig small intestine.The Journal of Physiology, 1983
- Activities of Enzymes Involved in Amino‐Acid Metabolism in Developing Rat PlacentaEuropean Journal of Biochemistry, 1980
- A modification of the Lowry procedure to simplify protein determination in membrane and lipoprotein samplesAnalytical Biochemistry, 1978
- Effect of cyclic AMP on placental active transport of amino acid in rats.The Tohoku Journal of Experimental Medicine, 1978
- Placental Growth Modification During Pregnancy in the RatEndocrinology, 1974