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ATP binding to the C-terminus of the Arabidopsis thaliana, AtCLCa, regulates nitrate transport into plant vacuoles

Authors :
De Angeli A.
Moran O.
Wege S.
Filleur S.
Ephritikhine G.
Thomine S.
Barbier-Brygoo H.
Gambale F.
Source :
The Journal of biological chemistry, 284 (2009): 26526–26532. doi:10.1074/jbc.M109.005132, info:cnr-pdr/source/autori:De Angeli A.; Moran O.; Wege S.; Filleur S.; Ephritikhine G.; Thomine S.; Barbier-Brygoo H.; Gambale F./titolo:ATP binding to the C-terminus of the Arabidopsis thaliana, AtCLCa, regulates nitrate transport into plant vacuoles./doi:10.1074%2Fjbc.M109.005132/rivista:The Journal of biological chemistry (Print)/anno:2009/pagina_da:26526/pagina_a:26532/intervallo_pagine:26526–26532/volume:284
Publication Year :
2009
Publisher :
American Society for Biochemistry and Molecular Biology [etc.], [Baltimore, etc.], Stati Uniti d'America, 2009.

Abstract

Nitrate, one of the major nitrogen sources for plants, is stored in the vacuole. Nitrate accumulation within the vacuole is primarily mediated by the NO(3)(-)/H(+) exchanger AtCLCa, which belongs to the chloride channel (CLC) family. Crystallography analysis of hCLC5 suggested that the C-terminal domain, composed by two cystathionine beta-synthetase motifs in all eukaryotic members of the CLC family is able to interact with ATP. However, interaction of nucleotides with a functional CLC protein has not been unambiguously demonstrated. Here we show that ATP reversibly inhibits AtCLCa by interacting with the C-terminal domain. Applying the patch clamp technique to isolated Arabidopsis thaliana vacuoles, we demonstrate that ATP reduces AtCLCa activity with a maximum inhibition of 60%. ATP inhibition of nitrate influx into the vacuole at cytosolic physiological nitrate concentrations suggests that ATP modulation is physiologically relevant. ADP and AMP do not decrease the AtCLCa transport activity; nonetheless, AMP (but not ADP) competes with ATP, preventing inhibition. A molecular model of the C terminus of AtCLCa was built by homology to hCLC5 C terminus. The model predicted the effects of mutations of the ATP binding site on the interaction energy between ATP and AtCLCa that were further confirmed by functional expression of site-directed mutated AtCLCa.

Details

Language :
English
Database :
OpenAIRE
Journal :
The Journal of biological chemistry, 284 (2009): 26526–26532. doi:10.1074/jbc.M109.005132, info:cnr-pdr/source/autori:De Angeli A.; Moran O.; Wege S.; Filleur S.; Ephritikhine G.; Thomine S.; Barbier-Brygoo H.; Gambale F./titolo:ATP binding to the C-terminus of the Arabidopsis thaliana, AtCLCa, regulates nitrate transport into plant vacuoles./doi:10.1074%2Fjbc.M109.005132/rivista:The Journal of biological chemistry (Print)/anno:2009/pagina_da:26526/pagina_a:26532/intervallo_pagine:26526–26532/volume:284
Accession number :
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