TY - JOUR
T1 - TMKP1 is a novel wheat stress responsive MAP kinase phosphatase localized in the nucleus
AU - Zaïdi, Ikram
AU - Ebel, Chantal
AU - Touzri, Majdi
AU - Herzog, Etienne
AU - Evrard, Jean Luc
AU - Schmit, Anne Catherine
AU - Masmoudi, Khaled
AU - Hanin, Moez
N1 - Funding Information:
Acknowledgments We thank Shin Takeda and Laurent Pieuchot for their technical help and Daisuke Takezawa for providing the plasmid pGST-WCK-1. This work was supported by grants from the Ministry of Higher Education, Scientific Research and Technology, Tunisia and la Coopération Tuniso-Franc¸aise DGRS/CNRS 07/R 09-06.
PY - 2010/6
Y1 - 2010/6
N2 - The regulation of plant signalling responses by Mitogen-Activated Protein Kinases (MAPKs)-mediated protein phosphorylation is well recognized. MAP kinase phosphatases (MKPs) are negative regulators of MAPKs in eukaryotes. We report here the identification and the characterization of TMKP1, the first wheat MKP (Triticum turgidum L. subsp. Durum). Expression profile analyses performed in two durum wheat cultivars showing a marked difference in salt and drought stress tolerance, revealed a differential regulation of TMKP1. Under salt and osmotic stress, TMKP1 is induced in the sensitive wheat variety and repressed in the tolerant one. A recombinant TMKP1 was shown to be an active phosphatase and capable to interact specifically with two wheat MAPKs (TMPK3 and TMPK6). In BY2 tobacco cells transiently expressing GFP::TMKP1, the fusion protein was localized into the nucleus. Interestingly, the deletion of the N-terminal non catalytic domain results in a strong accumulation of the truncated fusion protein in the cytoplasm. In addition, when expressed in BY2 cells, TMPK3 and TMPK6 fused to red fluorescent protein (RFP) were shown to be present predominantly in the nucleus. Surprisingly, when co-expressed with the N-terminal truncated TMKP1 fusion protein; both kinases are excluded from the nuclear compartment and accumulate in the cytoplasm. This strongly suggests that TMKP1 interacts in vivo with TMPK3 and TMPK6 and controls their subcellular localization. Taken together, our results show that the newly isolated wheat MKP might play an active role in modulating the plant cell responses to salt and osmotic stress responses.
AB - The regulation of plant signalling responses by Mitogen-Activated Protein Kinases (MAPKs)-mediated protein phosphorylation is well recognized. MAP kinase phosphatases (MKPs) are negative regulators of MAPKs in eukaryotes. We report here the identification and the characterization of TMKP1, the first wheat MKP (Triticum turgidum L. subsp. Durum). Expression profile analyses performed in two durum wheat cultivars showing a marked difference in salt and drought stress tolerance, revealed a differential regulation of TMKP1. Under salt and osmotic stress, TMKP1 is induced in the sensitive wheat variety and repressed in the tolerant one. A recombinant TMKP1 was shown to be an active phosphatase and capable to interact specifically with two wheat MAPKs (TMPK3 and TMPK6). In BY2 tobacco cells transiently expressing GFP::TMKP1, the fusion protein was localized into the nucleus. Interestingly, the deletion of the N-terminal non catalytic domain results in a strong accumulation of the truncated fusion protein in the cytoplasm. In addition, when expressed in BY2 cells, TMPK3 and TMPK6 fused to red fluorescent protein (RFP) were shown to be present predominantly in the nucleus. Surprisingly, when co-expressed with the N-terminal truncated TMKP1 fusion protein; both kinases are excluded from the nuclear compartment and accumulate in the cytoplasm. This strongly suggests that TMKP1 interacts in vivo with TMPK3 and TMPK6 and controls their subcellular localization. Taken together, our results show that the newly isolated wheat MKP might play an active role in modulating the plant cell responses to salt and osmotic stress responses.
KW - Abiotic stress
KW - Durum wheat
KW - GFP
KW - MAP kinase
KW - MAP kinase phosphatase
KW - Nuclear localization
KW - RFP
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U2 - 10.1007/s11103-010-9617-4
DO - 10.1007/s11103-010-9617-4
M3 - Article
C2 - 20204675
AN - SCOPUS:77953096123
SN - 0167-4412
VL - 73
SP - 325
EP - 338
JO - Plant Molecular Biology
JF - Plant Molecular Biology
IS - 3
ER -