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Lotus japonicus VIH2 is an inositol pyrophosphate synthase that regulates arbuscular mycorrhiza
Science Advances 2026
online lesenSpecies Context Reverses PPIP5K Control of Fungal Morphogenesis and Actin Organization
NUDIX hydrolases target specific inositol pyrophosphates and regulate phosphate homeostasis and bacterial pathogen susceptibility in Arabidopsis
Journal of Integrative Plant Biology 2025
online lesenA small signaling domain controls PPIP5K phosphatase activity in phosphate homeostasis
Nature Communications 2025
online lesenA small signaling domain controls PPIP5K phosphatase activity in phosphate homeostasis
Inositol pyrophosphate catabolism by three families of phosphatases regulates plant growth and development
PLOS Genetics 2024
online lesenNUDIX Hydrolases Target Specific Inositol Pyrophosphates and Regulate Phosphate Homeostasis and Bacterial Pathogen Susceptibility in Arabidopsis
Pharmacological tools to investigate inositol polyphosphate kinases – Enzymes of increasing therapeutic relevance
Advances in Biological Regulation 2022
online lesenInositol Pyrophosphate-Controlled Kinetochore Architecture and Mitotic Entry in <i>S. pombe</i>
Journal of Fungi 2022
online lesenDas Leibniz-Forschungsinstitut für Molekulare Pharmakologie (FMP) gehört zum Forschungsverbund Berlin e.V. (FVB), einem Zusammenschluss von sieben natur-, lebens- und umweltwissenschaftlichen Instituten in Berlin. Die Einrichtungen sind Mitglieder der Leibniz-Gemeinschaft.
Leibniz-Forschungsinstitut für Molekulare Pharmakologie im Forschungsverbund Berlin e.V. (FMP)
Rudower Chaussee 17
12489 Berlin, Deutschland