Proton-Symport of l-Valine in Plasma Membrane Vesicles Isolated from Leaves of the Wild-Type and the Valr-2 Mutant of Nicotiana tabacum L
Transport of amino acids across the plasma membranes of various cell types is a key process in controlling the nitrogen balance of leaves. We studied the transport of the neutral amino acid l-valine into plasma membrane vesicles obtained by aqueous polymer two-phase partitioning of a microsomal frac...
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Published in | Plant and cell physiology Vol. 41; no. 11; pp. 1210 - 1217 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
Oxford
Oxford University Press
15.11.2000
Oxford Publishing Limited (England) |
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Abstract | Transport of amino acids across the plasma membranes of various cell types is a key process in controlling the nitrogen balance of leaves. We studied the transport of the neutral amino acid l-valine into plasma membrane vesicles obtained by aqueous polymer two-phase partitioning of a microsomal fraction isolated from leaves of the wild-type and the Valr-2 mutant of tobacco (Nicotiana tabacum L.). Initial influxes were determined after the imposition of a pH-gradient (ΔpH, inside alkaline) and/or an electrical gradient (Δψ, inside negative) across the vesicle membrane. The initial magnitudes of the imposed gradients were ΔpH=2 and Δψ=−68 mV. In vesicles from the wild-type, the ΔpH-dependent valine influx could be analysed into a high-affinity (Km ≈20 µM) and a low-affinity (Km ≈3 mM) component. The influx of valine by the low-affinity system was stimulated about twofold, and that by the high-affinity system more than sixfold by the imposition of Δψ. This strong stimulation of the high-affinity system may indicate that it transports 2H+/amino acid. In the Valr-2 mutant the high-affinity component appeared to be completely absent. |
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AbstractList | Transport of amino acids across the plasma membranes of various cell types is a key process in controlling the nitrogen balance of leaves. We studied the transport of the neutral amino acid l-valine into plasma membrane vesicles obtained by aqueous polymer two-phase partitioning of a microsomal fraction isolated from leaves of the wild-type and the Valr-2 mutant of tobacco (Nicotiana tabacum L.). Initial influxes were determined after the imposition of a pH-gradient ([Delta]pH, inside alkaline) and/or an electrical gradient ([Delta][psi], inside negative) across the vesicle membrane. The initial magnitudes of the imposed gradients were [Delta]pH=2 and [Delta][psi]=-68 mV. In vesicles from the wild-type, the [Delta]pH-dependent valine influx could be analysed into a high-affinity (Km [approximate]20 [mu]M) and a low-affinity (Km [approximate]3 mM) component. The influx of valine by the low-affinity system was stimulated about twofold, and that by the high-affinity system more than sixfold by the imposition of [Delta][psi]. This strong stimulation of the high-affinity system may indicate that it transports 2H+/amino acid. In the Valr-2 mutant the high-affinity component appeared to be completely absent. Transport of amino acids across the plasma membranes of various cell types is a key process in controlling the nitrogen balance of leaves. We studied the transport of the neutral amino acid l-valine into plasma membrane vesicles obtained by aqueous polymer two-phase partitioning of a microsomal fraction isolated from leaves of the wild-type and the Valr-2 mutant of tobacco (Nicotiana tabacum L.). Initial influxes were determined after the imposition of a pH-gradient (ΔpH, inside alkaline) and/or an electrical gradient (Δψ, inside negative) across the vesicle membrane. The initial magnitudes of the imposed gradients were ΔpH=2 and Δψ=−68 mV. In vesicles from the wild-type, the ΔpH-dependent valine influx could be analysed into a high-affinity (Km ≈20 µM) and a low-affinity (Km ≈3 mM) component. The influx of valine by the low-affinity system was stimulated about twofold, and that by the high-affinity system more than sixfold by the imposition of Δψ. This strong stimulation of the high-affinity system may indicate that it transports 2H+/amino acid. In the Valr-2 mutant the high-affinity component appeared to be completely absent. |
Author | Schuurmans, Jolanda A.M.J. Borstlap, Adrianus C. |
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Cites_doi | 10.1073/pnas.90.16.7441 10.1111/j.1438-8677.1977.tb01105.x 10.1007/BF02872295 10.1016/0005-2736(84)90144-5 10.1016/0005-2736(84)90108-1 10.1016/0005-2736(90)90025-J 10.1007/BF00330994 10.1104/pp.103.1.49 10.1074/jbc.270.27.16315 10.1007/BF01872636 10.1146/annurev.pp.36.060185.001135 10.1104/pp.24.1.1 10.1104/pp.88.2.487 10.1126/science.186.4167.882 10.1111/j.1399-3054.1997.tb01073.x 10.1007/BF01868820 10.1016/S1360-1385(98)01275-8 10.1016/S1360-1385(98)01231-X 10.1074/jbc.272.20.13040 10.1111/j.1365-3040.1983.tb01274.x 10.1111/j.1399-3054.1989.tb04969.x 10.1074/jbc.271.4.2213 10.1104/pp.70.5.1335 10.1111/j.1399-3054.1994.tb02997.x 10.1111/j.1438-8677.1995.tb00860.x 10.1007/BF00397397 10.1016/0076-6879(87)48054-3 10.1016/0014-5793(88)81142-6 10.1104/pp.94.1.268 10.1016/0005-2736(81)90415-6 10.1007/978-3-642-74522-5_2 10.1073/pnas.90.13.5944 10.1104/pp.99.3.996 10.1007/BF01925862 10.1046/j.1365-313X.1995.07010165.x 10.1146/annurev.pp.44.060193.002501 10.1016/0076-6879(74)32039-3 |
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Snippet | Transport of amino acids across the plasma membranes of various cell types is a key process in controlling the nitrogen balance of leaves. We studied the... |
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SubjectTerms | bovine serum albumin BSA carbonyl cyanide m-chlorophenyl-hydrazone CCCP dithiothreitol DTT Key words: Amino acids — H+-symport — Membrane transport — Nicotiana tabacum L. — Plasma membrane vesicles — Valine resistant mutant |
Title | Proton-Symport of l-Valine in Plasma Membrane Vesicles Isolated from Leaves of the Wild-Type and the Valr-2 Mutant of Nicotiana tabacum L |
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