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ITPK1 is an InsP6/ADP phosphotransferase that controls phosphate signaling in Arabidopsis

摘要In plants,phosphate (Pi) homeostasis is regulated by the interaction of PHR transcription factors with stand-alone SPX proteins,which act as sensors for inositol pyrophosphates.In this study,we combined different methods to obtain a comprehensive picture of how inositol (pyro)phosphate metabolism is regu-lated by Pi and dependent on the inositol phosphate kinase ITPK1.We found that inositol pyrophosphates are more responsive to Pi than lower inositol phosphates,a response conserved across kingdoms.Using the capillary electrophoresis electrospray ionization mass spectrometry (CE-ESI-MS) we could separate different InsP7 isomers in Arabidopsis and rice,and identify 4/6-InsP7 and a PP-InsP4 isomer hitherto not reported in plants.We found that the inositol pyrophosphates 1/3-InsP7,5-InsP7,and InsP8 increase several fold in shoots after Pi resupply and that tissue-specific accumulation of inositol pyrophosphates relies on ITPK1 activities and MRP5-dependent InsP6 compartmentalization.Notably,ITPK1 is critical for Pi-depen-dent 5-1nsP7 and InsP8 synthesis in planta and its activity regulates Pi starvation responses in a PHR-dependent manner.Furthermore,we demonstrated that ITPK1-mediated conversion of InsP6 to 5-InsP7 requires high ATP concentrations and that Arabidopsis ITPK1 has an ADP phosphotransferass activity to dephosphorylate specifically 5-InsP7 under low ATP.Collectively,our study provides new insights into Pi-dependent changes in nutritional and energetic states with the synthesis of regulatory inositol pyrophos-phates.

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作者 Esther Riemer [1] Danye Qiu [2] Debabrata Laha [3] Robert K.Harmel [4] Philipp Gaugler [1] Verena Gaugler [1] Michael Frei [5] Mohammad-Reza Hajirezaei [6] Nargis Parvin Laha [1] Lukas Krusenbaum [1] Robin Schneider [1] Adolfo Saiardi [7] Dorothea Fiedler [4] Henning J.Jessen [2] Gabriel Schaaf [1] Ricardo F.H.Giehl [6] 学术成果认领
作者单位 Department of Plant Nutrition,Institute of Crop Science and Resource Conservation,Rheinische Friedrich-Wilhelms-Universit(a)t Bonn,53115 Bonn,Germany [1] Department of Chemistry and Pharmacy and CIBSS-Centre for Integrative Biological Signalling Studies,Albert-Ludwigs University Freiburg,79104 Freiburg,Germany [2] Medical Research Council Laboratory for Molecular Cell Biology (MRC-LMCB),University College London,London WC1E 6BT,UK;Department of Biochemistry,Indian Institute of Science,Bengaluru,Karnataka 560012,India [3] Leibniz-Forschungsinstitut für Molekulare Pharmakologie,13125 Berlin,Germany;Department of Chemistry,Humboldt Universit(a)t zu Berlin,12489 Berlin,Germany [4] Institute of Agronomy and Crop Physiology,Justus-Liebig University Giessen,35392 Giessen,Germany [5] Department of Physiology & Cell Biology,Leibniz-Institute of Plant Genetics and Crop Plant Research,06466 Gatersleben,Germany [6] Medical Research Council Laboratory for Molecular Cell Biology (MRC-LMCB),University College London,London WC1E 6BT,UK [7]
栏目名称 Research Articles
发布时间 2022-01-04
基金项目
This work was funded by grants from the Deutsche Forschungsgemein-schaft (HE 8362/1-1.DFG Eigene Stelle.to R.F.H.G..SCHA 1274/4-1.SCHA 1274/5-1.Research Training Group GRK 2064 and Germany's Excellence Strategy.EXC-2070-390732324.PhenoRob to G.S..JE 572/4-1 and Germany's Excellence Str grants from the Medical Research Council and a DBT-IISc Program to D
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分子植物(英文版)

分子植物(英文版)

2021年14卷11期

1864-1880页

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