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Phosphoregulation in the N-terminus of NRT2.1 affects nitrate uptake by controlling the interaction of NRT2.1 with NAR2.1 and kinase HPCAL1 in Arabidopsis.

Authors :
Li, Zhi
Wu, Xu Na
Jacquot, Aurore
Chaput, Valentin
Adamo, Mattia
Neuhäuser, Benjamin
Straub, Tatsiana
Lejay, Laurence
Schulze, Waltraud X
Source :
Journal of Experimental Botany; 3/27/2024, Vol. 75 Issue 7, p2127-2142, 16p
Publication Year :
2024

Abstract

NRT2.1, the major high affinity nitrate transporter in roots, can be phosphorylated at five different sites within the N- and the C-terminus. Here, we characterized the functional relationship of two N-terminal phosphorylation sites, S21 and S28, in Arabidopsis. Based on a site-specific correlation network, we identified a receptor kinase (HPCAL1, AT5G49770), phosphorylating NRT2.1 at S21 and resulting in active nitrate uptake. HPCAL1 itself was regulated by phosphorylation at S839 and S870 within its kinase domain. In the active state, when S839 was dephosphorylated and S870 was phosphorylated, HPCAL1 was found to interact with the N-terminus of NRT2.1, mainly when S28 was dephosphorylated. Phosphorylation of NRT2.1 at S21 resulted in a reduced interaction of NRT2.1 with its activator NAR2.1, but nitrate transport activity remained. By contrast, phosphorylated NRT2.1 at S28 enhanced the interaction with NAR2.1, but reduced the interaction with HPCAL1. Here we identified HPCAL1 as the kinase affecting this phospho-switch through phosphorylation of NRT2.1 at S21. [ABSTRACT FROM AUTHOR]

Subjects

Subjects :
NITRATES
ARABIDOPSIS

Details

Language :
English
ISSN :
00220957
Volume :
75
Issue :
7
Database :
Complementary Index
Journal :
Journal of Experimental Botany
Publication Type :
Academic Journal
Accession number :
176275819
Full Text :
https://doi.org/10.1093/jxb/erad490