Cargando…

Searching for Osmosensing Determinants in Poplar Histidine-Aspartate Kinases

Previous works have shown the existence of protein partnership, belonging to a MultiStep Phosphorelay (MSP), potentially involved in osmosensing in Populus. The first actor of this signalling pathway belongs to the histidine-aspartate kinase (HK) family, which also includes the yeast osmosensor Sln1...

Descripción completa

Detalles Bibliográficos
Autores principales: Makhokh, Hanae, Lafite, Pierre, Larcher, Mélanie, Lamblin, Frédéric, Chefdor, Françoise, Depierreux, Christiane, Tanigawa, Mirai, Maeda, Tatsuya, Carpin, Sabine, Héricourt, François
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10093795/
https://www.ncbi.nlm.nih.gov/pubmed/37047295
http://dx.doi.org/10.3390/ijms24076318
_version_ 1785023672119984128
author Makhokh, Hanae
Lafite, Pierre
Larcher, Mélanie
Lamblin, Frédéric
Chefdor, Françoise
Depierreux, Christiane
Tanigawa, Mirai
Maeda, Tatsuya
Carpin, Sabine
Héricourt, François
author_facet Makhokh, Hanae
Lafite, Pierre
Larcher, Mélanie
Lamblin, Frédéric
Chefdor, Françoise
Depierreux, Christiane
Tanigawa, Mirai
Maeda, Tatsuya
Carpin, Sabine
Héricourt, François
author_sort Makhokh, Hanae
collection PubMed
description Previous works have shown the existence of protein partnership, belonging to a MultiStep Phosphorelay (MSP), potentially involved in osmosensing in Populus. The first actor of this signalling pathway belongs to the histidine-aspartate kinase (HK) family, which also includes the yeast osmosensor Sln1, as well as the Arabidopsis putative osmosensor AHK1. In poplar, the homologous AHK1 protein corresponds to a pair of paralogous proteins, HK1a and HK1b, exhibiting an extracellular domain (ECD), as in Sln1 and AHK1. An ECD alignment of AHK1-like proteins, from different plant species, showed a particularly well conserved ECD and revealed the presence of a cache domain. This level of conservation suggested a functional role of this domain in osmosensing. Thus, we tested this possibility by modelling assisted mutational analysis of the cache domain of the Populus HK1 proteins. The mutants were assessed for their ability to respond to different osmotic stress and the results point to an involvement of this domain in HK1 functionality. Furthermore, since HK1b was shown to respond better to stress than HK1a, these two receptors constituted a good system to search for osmosensing determinants responsible for this difference in efficiency. With domain swapping experiments, we finally demonstrated that the cache domain, as well as the second transmembrane domain, are involved in the osmosensing efficiency of these receptors.
format Online
Article
Text
id pubmed-10093795
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-100937952023-04-13 Searching for Osmosensing Determinants in Poplar Histidine-Aspartate Kinases Makhokh, Hanae Lafite, Pierre Larcher, Mélanie Lamblin, Frédéric Chefdor, Françoise Depierreux, Christiane Tanigawa, Mirai Maeda, Tatsuya Carpin, Sabine Héricourt, François Int J Mol Sci Article Previous works have shown the existence of protein partnership, belonging to a MultiStep Phosphorelay (MSP), potentially involved in osmosensing in Populus. The first actor of this signalling pathway belongs to the histidine-aspartate kinase (HK) family, which also includes the yeast osmosensor Sln1, as well as the Arabidopsis putative osmosensor AHK1. In poplar, the homologous AHK1 protein corresponds to a pair of paralogous proteins, HK1a and HK1b, exhibiting an extracellular domain (ECD), as in Sln1 and AHK1. An ECD alignment of AHK1-like proteins, from different plant species, showed a particularly well conserved ECD and revealed the presence of a cache domain. This level of conservation suggested a functional role of this domain in osmosensing. Thus, we tested this possibility by modelling assisted mutational analysis of the cache domain of the Populus HK1 proteins. The mutants were assessed for their ability to respond to different osmotic stress and the results point to an involvement of this domain in HK1 functionality. Furthermore, since HK1b was shown to respond better to stress than HK1a, these two receptors constituted a good system to search for osmosensing determinants responsible for this difference in efficiency. With domain swapping experiments, we finally demonstrated that the cache domain, as well as the second transmembrane domain, are involved in the osmosensing efficiency of these receptors. MDPI 2023-03-28 /pmc/articles/PMC10093795/ /pubmed/37047295 http://dx.doi.org/10.3390/ijms24076318 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Makhokh, Hanae
Lafite, Pierre
Larcher, Mélanie
Lamblin, Frédéric
Chefdor, Françoise
Depierreux, Christiane
Tanigawa, Mirai
Maeda, Tatsuya
Carpin, Sabine
Héricourt, François
Searching for Osmosensing Determinants in Poplar Histidine-Aspartate Kinases
title Searching for Osmosensing Determinants in Poplar Histidine-Aspartate Kinases
title_full Searching for Osmosensing Determinants in Poplar Histidine-Aspartate Kinases
title_fullStr Searching for Osmosensing Determinants in Poplar Histidine-Aspartate Kinases
title_full_unstemmed Searching for Osmosensing Determinants in Poplar Histidine-Aspartate Kinases
title_short Searching for Osmosensing Determinants in Poplar Histidine-Aspartate Kinases
title_sort searching for osmosensing determinants in poplar histidine-aspartate kinases
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10093795/
https://www.ncbi.nlm.nih.gov/pubmed/37047295
http://dx.doi.org/10.3390/ijms24076318
work_keys_str_mv AT makhokhhanae searchingforosmosensingdeterminantsinpoplarhistidineaspartatekinases
AT lafitepierre searchingforosmosensingdeterminantsinpoplarhistidineaspartatekinases
AT larchermelanie searchingforosmosensingdeterminantsinpoplarhistidineaspartatekinases
AT lamblinfrederic searchingforosmosensingdeterminantsinpoplarhistidineaspartatekinases
AT chefdorfrancoise searchingforosmosensingdeterminantsinpoplarhistidineaspartatekinases
AT depierreuxchristiane searchingforosmosensingdeterminantsinpoplarhistidineaspartatekinases
AT tanigawamirai searchingforosmosensingdeterminantsinpoplarhistidineaspartatekinases
AT maedatatsuya searchingforosmosensingdeterminantsinpoplarhistidineaspartatekinases
AT carpinsabine searchingforosmosensingdeterminantsinpoplarhistidineaspartatekinases
AT hericourtfrancois searchingforosmosensingdeterminantsinpoplarhistidineaspartatekinases