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Inositol pyrophosphates promote the interaction of SPX domains with the coiled-coil motif of PHR transcription factors to regulate plant phosphate homeostasis.
Ried, Martina K; Wild, Rebekka; Zhu, Jinsheng; Pipercevic, Joka; Sturm, Kristina; Broger, Larissa; Harmel, Robert K; Abriata, Luciano A; Hothorn, Ludwig A; Fiedler, Dorothea; Hiller, Sebastian; Hothorn, Michael.
Affiliation
  • Ried MK; Structural Plant Biology Laboratory, Department of Botany and Plant Biology, University of Geneva, 1211, Geneva, Switzerland.
  • Wild R; Leibniz Institute of Plant Biochemistry, 06120, Halle, Germany.
  • Zhu J; Structural Plant Biology Laboratory, Department of Botany and Plant Biology, University of Geneva, 1211, Geneva, Switzerland.
  • Pipercevic J; Institut de Biologie Structurale (IBS), 38044, Grenoble, France.
  • Sturm K; Structural Plant Biology Laboratory, Department of Botany and Plant Biology, University of Geneva, 1211, Geneva, Switzerland.
  • Broger L; Biozentrum Basel, 4056, Basel, Switzerland.
  • Harmel RK; Structural Plant Biology Laboratory, Department of Botany and Plant Biology, University of Geneva, 1211, Geneva, Switzerland.
  • Abriata LA; Structural Plant Biology Laboratory, Department of Botany and Plant Biology, University of Geneva, 1211, Geneva, Switzerland.
  • Hothorn LA; Leibniz-Forschungsinstitut für Molekulare Pharmakologie, 13125, Berlin, Germany.
  • Fiedler D; Department of Chemistry, Humboldt-Universität zu Berlin, 12489, Berlin, Germany.
  • Hiller S; Protein production and structure Core Facility, EPFL, 1015, Lausanne, Switzerland.
  • Hothorn M; Institute of Biostatistics, Leibniz University, 30419, Hannover, Germany.
Nat Commun ; 12(1): 384, 2021 01 15.
Article de En | MEDLINE | ID: mdl-33452263
Phosphorus is an essential nutrient taken up by organisms in the form of inorganic phosphate (Pi). Eukaryotes have evolved sophisticated Pi sensing and signaling cascades, enabling them to stably maintain cellular Pi concentrations. Pi homeostasis is regulated by inositol pyrophosphate signaling molecules (PP-InsPs), which are sensed by SPX domain-containing proteins. In plants, PP-InsP-bound SPX receptors inactivate Myb coiled-coil (MYB-CC) Pi starvation response transcription factors (PHRs) by an unknown mechanism. Here we report that a InsP8-SPX complex targets the plant-unique CC domain of PHRs. Crystal structures of the CC domain reveal an unusual four-stranded anti-parallel arrangement. Interface mutations in the CC domain yield monomeric PHR1, which is no longer able to bind DNA with high affinity. Mutation of conserved basic residues located at the surface of the CC domain disrupt interaction with the SPX receptor in vitro and in planta, resulting in constitutive Pi starvation responses. Together, our findings suggest that InsP8 regulates plant Pi homeostasis by controlling the oligomeric state and hence the promoter binding capability of PHRs via their SPX receptors.
Sujet(s)

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Facteurs de transcription / Protéines nucléaires / Arabidopsis / Diphosphates / Régulation de l'expression des gènes végétaux / Protéines d'Arabidopsis / Inositol phosphates Langue: En Journal: Nat Commun Sujet du journal: BIOLOGIA / CIENCIA Année: 2021 Type de document: Article Pays d'affiliation: Suisse Pays de publication: Royaume-Uni

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Facteurs de transcription / Protéines nucléaires / Arabidopsis / Diphosphates / Régulation de l'expression des gènes végétaux / Protéines d'Arabidopsis / Inositol phosphates Langue: En Journal: Nat Commun Sujet du journal: BIOLOGIA / CIENCIA Année: 2021 Type de document: Article Pays d'affiliation: Suisse Pays de publication: Royaume-Uni