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logo citeas Sklodowski, K., Riedelsberger, J., Raddatz, N., Riadi, G., Caballero, J., Chérel, I., … Dreyer, I. (2017, March 16). The receptor-like pseudokinase MRH1 interacts with the voltage-gated potassium channel AKT2. Scientific Reports. Springer Science and Business Media LLC. http://doi.org/10.1038/srep44611
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Título

The receptor-like pseudokinase MRH1 interacts with the voltage-gated potassium channel AKT2

AutorSklodowski, Kamil; Riedelsberger, Janin; Raddatz, Natalia CSIC ORCID; Riadi, Gonzalo; Caballero, Julio; Chérel, Isabelle; Schulze, Waltraud; Graf, Alexander; Dreyer, Ingo
FinanciadoresInternational Max Planck Research Schools
Fondo Nacional de Desarrollo Científico y Tecnológico (Chile)
Comisión Nacional de Investigación Científica y Tecnológica (Chile)
European Commission
German Research Foundation
Ministerio de Economía y Competitividad (España)
Fecha de publicación27-mar-2017
EditorSpringer Nature
CitaciónScientific Reports 7: 44611 (2017)
ResumenThe potassium channel AKT2 plays important roles in phloem loading and unloading. It can operate as inward-rectifying channel that allows H -ATPase-energized K uptake. Moreover, through reversible post-translational modifications it can also function as an open, K -selective channel, which taps a 'potassium battery', providing additional energy for transmembrane transport processes. Knowledge about proteins involved in the regulation of the operational mode of AKT2 is very limited. Here, we employed a large-scale yeast two-hybrid screen in combination with fluorescence tagging and null-allele mutant phenotype analysis and identified the plasma membrane localized receptor-like kinase MRH1/MDIS2 (AT4G18640) as interaction partner of AKT2. The phenotype of the mrh1-1 knockout plant mirrors that of akt2 knockout plants in energy limiting conditions. Electrophysiological analyses showed that MRH1/MDIS2 failed to exert any functional regulation on AKT2. Using structural protein modeling approaches, we instead gathered evidence that the putative kinase domain of MRH1/MDIS2 lacks essential sites that are indispensable for a functional kinase suggesting that MRH1/MDIS2 is a pseudokinase. We propose that MRH1/MDIS2 and AKT2 are likely parts of a bigger protein complex. MRH1 might help to recruit other, so far unknown partners, which post-translationally regulate AKT2. Additionally, MRH1 might be involved in the recognition of chemical signals.
Versión del editorhttps://doi.org/10.1038/srep44611
URIhttp://hdl.handle.net/10261/190088
DOI10.1038/srep44611
E-ISSN2045-2322
Licencia de usohttp://creativecommons.org/licenses/by/4.0/
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