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Vicia faba SV channel VfTPC1 is a hyperexcitable variant of plant vacuole Two Pore Channels

To fire action-potential-like electrical signals, the vacuole membrane requires the two-pore channel TPC1, formerly called SV channel. The TPC1/SV channel functions as a depolarization-stimulated, non-selective cation channel that is inhibited by luminal Ca(2+). In our search for species-dependent f...

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Detalles Bibliográficos
Autores principales: Lu, Jinping, Dreyer, Ingo, Dickinson, Miles Sasha, Panzer, Sabine, Jaślan, Dawid, Navarro-Retamal, Carlos, Geiger, Dietmar, Terpitz, Ulrich, Becker, Dirk, Stroud, Robert M, Marten, Irene, Hedrich, Rainer
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10665017/
https://www.ncbi.nlm.nih.gov/pubmed/37991833
http://dx.doi.org/10.7554/eLife.86384
Descripción
Sumario:To fire action-potential-like electrical signals, the vacuole membrane requires the two-pore channel TPC1, formerly called SV channel. The TPC1/SV channel functions as a depolarization-stimulated, non-selective cation channel that is inhibited by luminal Ca(2+). In our search for species-dependent functional TPC1 channel variants with different luminal Ca(2+) sensitivity, we found in total three acidic residues present in Ca(2+) sensor sites 2 and 3 of the Ca(2+)-sensitive AtTPC1 channel from Arabidopsis thaliana that were neutral in its Vicia faba ortholog and also in those of many other Fabaceae. When expressed in the Arabidopsis AtTPC1-loss-of-function background, wild-type VfTPC1 was hypersensitive to vacuole depolarization and only weakly sensitive to blocking luminal Ca(2+). When AtTPC1 was mutated for these VfTPC1-homologous polymorphic residues, two neutral substitutions in Ca(2+) sensor site 3 alone were already sufficient for the Arabidopsis At-VfTPC1 channel mutant to gain VfTPC1-like voltage and luminal Ca(2+) sensitivity that together rendered vacuoles hyperexcitable. Thus, natural TPC1 channel variants exist in plant families which may fine-tune vacuole excitability and adapt it to environmental settings of the particular ecological niche.