Binding of phosphatidic acid to 14-3-3 proteins hampers their ability to activate the plant plasma membrane H plus -ATPase

被引:26
作者
Camoni, Lorenzo [1 ]
Di Lucente, Cristina [1 ]
Pallucca, Roberta [1 ]
Visconti, Sabina [1 ]
Aducci, Patrizia [1 ]
机构
[1] Univ Roma Tor Vergata, Dept Biol, I-00133 Rome, Italy
关键词
phosphatidic acid; 14-3-3; proteins; plasma membrane H plus -ATPase; protein-protein interaction; plant cell; NITRATE REDUCTASE; PHOSPHORYLATION; IDENTIFICATION; POLYAMINES; REGULATORS; INTERACTS; RESIDUES;
D O I
10.1002/iub.1058
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Phosphatidic acid is a phospholipid second messenger implicated in various cellular processes in eukaryotes. In plants, production of phosphatidic acid is triggered in response to a number of biotic and abiotic stresses. Here, we show that phosphatidic acid binds to 14-3-3 proteins, a family of regulatory proteins which bind client proteins in a phosphorylation-dependent manner. Binding of phosphatidic acid involves the same 14-3-3 region engaged in protein target binding. Consequently, micromolar phosphatidic acid concentrations significantly hamper the interaction of 14-3-3 proteins with the plasma membrane H+-ATPase, a well characterized plant 14-3-3 target, thus inhibiting the phosphohydrolitic enzyme activity. Moreover, the proton pump is inhibited when endogenous PA production is triggered by phospholipase D and the G protein agonist mastoparan-7. Hence, our data propose a possible mechanism involving PA that regulates 14-3-3-mediated cellular processes in response to stress. (c) 2012 IUBMB IUBMB Life, 64(8): 710716, 2012
引用
收藏
页码:710 / 716
页数:7
相关论文
共 37 条
[1]  
Abramoff M.D., 2004, Biophotonics International, V11, P36
[2]   From cytosol to organelles: 14-3-3 proteins as multifunctional regulators of plant cell [J].
Aducci, P ;
Camoni, L ;
Marra, M ;
Visconti, S .
IUBMB LIFE, 2002, 53 (01) :49-55
[3]   Phosphorylated nitrate reductase and 14-3-3 proteins - Site of interaction, effects of ions, and evidence for an AMP-binding site on 14-3-3 proteins [J].
Athwal, GS ;
Huber, JL ;
Huber, SC .
PLANT PHYSIOLOGY, 1998, 118 (03) :1041-1048
[4]   Biological significance of divalent metal ion binding to 14-3-3 proteins in relationship to nitrate reductase inactivation [J].
Athwal, GS ;
Huber, JL ;
Huber, SC .
PLANT AND CELL PHYSIOLOGY, 1998, 39 (10) :1065-1072
[5]   Divalent cations and polyamines bind to loop 8 of 14-3-3 proteins, modulating their interaction with phosphorylated nitrate reductase [J].
Athwal, GS ;
Huber, SC .
PLANT JOURNAL, 2002, 29 (02) :119-129
[6]  
BALLIO A, 1968, Annali dell'Istituto Superiore di Sanita, V4, P317
[7]   The 14-3-3 proteins associate with the plant plasma membrane H+-ATPase to generate a fusicoccin binding complex and a fusicoccin responsive system [J].
Baunsgaard, L ;
Fuglsang, AT ;
Jahn, T ;
Korthout, HAAJ ;
de Boer, AH ;
Palmgren, MG .
PLANT JOURNAL, 1998, 13 (05) :661-671
[8]   Phosphorylation-dependent interaction between plant plasma membrane H+-ATPase and 14-3-3 proteins [J].
Camoni, L ;
Iori, V ;
Marra, M ;
Aducci, P .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (14) :9919-9923
[9]   Adenosine 5′-monophosphate inhibits the association of 14-3-3 proteins with the plant plasma membrane H+-ATPase [J].
Camoni, L ;
Visconti, S ;
Marra, M ;
Aducci, P .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (34) :31709-31712
[10]   PSEUDOMONAS-SYRINGAE PV SYRINGAE PHYTOTOXINS REVERSIBLY INHIBIT THE PLASMA-MEMBRANE H+-ATPASE AND DISRUPT UNILAMELLAR LIPOSOMES [J].
CAMONI, L ;
DIGIORGIO, D ;
MARRA, M ;
ADUCCI, P ;
BALLIO, A .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1995, 214 (01) :118-124