Interaction Between the SNARE SYP121 and the Plasma Membrane Aquaporin PIP2;7 Involves Different Protein Domains
Plasma membrane intrinsic proteins (PIPs) are channels facilitating the passive diffusion of water and small solutes. Arabidopsis PIP2;7 trafficking occurs through physical interaction with SNARE proteins including the syntaxin SYP121, a plasma membrane Qa-SNARE involved in membrane fusion. To bette...
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doaj-78a74a9f142f43fd8019509a73d73a2c2021-01-18T04:43:15ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2021-01-011110.3389/fpls.2020.631643631643Interaction Between the SNARE SYP121 and the Plasma Membrane Aquaporin PIP2;7 Involves Different Protein DomainsTimothée LalouxIrwin MatyjaszczykSimon BeaudelotCharles HachezFrançois ChaumontPlasma membrane intrinsic proteins (PIPs) are channels facilitating the passive diffusion of water and small solutes. Arabidopsis PIP2;7 trafficking occurs through physical interaction with SNARE proteins including the syntaxin SYP121, a plasma membrane Qa-SNARE involved in membrane fusion. To better understand the interaction mechanism, we aimed at identifying the interaction motifs in SYP121 and PIP2;7 using ratiometric bimolecular fluorescence complementation assays in Nicotiana benthamiana. SYP121 consists of four regions, N, H, Q, and C, and sequential deletions revealed that the C region, containing the transmembrane domain, as well as the H and Q regions, containing the Habc and Qa-SNARE functional domains, interact with PIP2;7. Neither the linker between the Habc and the Qa-SNARE domains nor the H or Q regions alone could fully restore the interaction with PIP2;7, suggesting that the interacting motif depends on the conformation taken by the HQ region. When investigating the interacting motif(s) in PIP2;7, we observed that deletion of the cytosolic N- and/or C- terminus led to a significant decrease in the interaction with SYP121. Shorter deletions revealed that at the N-terminal amino acid residues 18–26 were involved in the interaction. Domain swapping experiments between PIP2;7 and PIP2;6, a PIP isoform that does not interact with SYP121, showed that PIP2;7 N-terminal part up to the loop C was required to restore the full interaction signal, suggesting that, as it is the case for SYP121, the interaction motif(s) in PIP2;7 depend on the protein conformation. Finally, we also showed that PIP2;7 physically interacted with other Arabidopsis SYP1s and SYP121 orthologs.https://www.frontiersin.org/articles/10.3389/fpls.2020.631643/fullaquaporinsyntaxininteraction motifSNAREsplasma membrane intrinsic proteinratiometric bimolecular fluorescence complementation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Timothée Laloux Irwin Matyjaszczyk Simon Beaudelot Charles Hachez François Chaumont |
spellingShingle |
Timothée Laloux Irwin Matyjaszczyk Simon Beaudelot Charles Hachez François Chaumont Interaction Between the SNARE SYP121 and the Plasma Membrane Aquaporin PIP2;7 Involves Different Protein Domains Frontiers in Plant Science aquaporin syntaxin interaction motif SNAREs plasma membrane intrinsic protein ratiometric bimolecular fluorescence complementation |
author_facet |
Timothée Laloux Irwin Matyjaszczyk Simon Beaudelot Charles Hachez François Chaumont |
author_sort |
Timothée Laloux |
title |
Interaction Between the SNARE SYP121 and the Plasma Membrane Aquaporin PIP2;7 Involves Different Protein Domains |
title_short |
Interaction Between the SNARE SYP121 and the Plasma Membrane Aquaporin PIP2;7 Involves Different Protein Domains |
title_full |
Interaction Between the SNARE SYP121 and the Plasma Membrane Aquaporin PIP2;7 Involves Different Protein Domains |
title_fullStr |
Interaction Between the SNARE SYP121 and the Plasma Membrane Aquaporin PIP2;7 Involves Different Protein Domains |
title_full_unstemmed |
Interaction Between the SNARE SYP121 and the Plasma Membrane Aquaporin PIP2;7 Involves Different Protein Domains |
title_sort |
interaction between the snare syp121 and the plasma membrane aquaporin pip2;7 involves different protein domains |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Plant Science |
issn |
1664-462X |
publishDate |
2021-01-01 |
description |
Plasma membrane intrinsic proteins (PIPs) are channels facilitating the passive diffusion of water and small solutes. Arabidopsis PIP2;7 trafficking occurs through physical interaction with SNARE proteins including the syntaxin SYP121, a plasma membrane Qa-SNARE involved in membrane fusion. To better understand the interaction mechanism, we aimed at identifying the interaction motifs in SYP121 and PIP2;7 using ratiometric bimolecular fluorescence complementation assays in Nicotiana benthamiana. SYP121 consists of four regions, N, H, Q, and C, and sequential deletions revealed that the C region, containing the transmembrane domain, as well as the H and Q regions, containing the Habc and Qa-SNARE functional domains, interact with PIP2;7. Neither the linker between the Habc and the Qa-SNARE domains nor the H or Q regions alone could fully restore the interaction with PIP2;7, suggesting that the interacting motif depends on the conformation taken by the HQ region. When investigating the interacting motif(s) in PIP2;7, we observed that deletion of the cytosolic N- and/or C- terminus led to a significant decrease in the interaction with SYP121. Shorter deletions revealed that at the N-terminal amino acid residues 18–26 were involved in the interaction. Domain swapping experiments between PIP2;7 and PIP2;6, a PIP isoform that does not interact with SYP121, showed that PIP2;7 N-terminal part up to the loop C was required to restore the full interaction signal, suggesting that, as it is the case for SYP121, the interaction motif(s) in PIP2;7 depend on the protein conformation. Finally, we also showed that PIP2;7 physically interacted with other Arabidopsis SYP1s and SYP121 orthologs. |
topic |
aquaporin syntaxin interaction motif SNAREs plasma membrane intrinsic protein ratiometric bimolecular fluorescence complementation |
url |
https://www.frontiersin.org/articles/10.3389/fpls.2020.631643/full |
work_keys_str_mv |
AT timotheelaloux interactionbetweenthesnaresyp121andtheplasmamembraneaquaporinpip27involvesdifferentproteindomains AT irwinmatyjaszczyk interactionbetweenthesnaresyp121andtheplasmamembraneaquaporinpip27involvesdifferentproteindomains AT simonbeaudelot interactionbetweenthesnaresyp121andtheplasmamembraneaquaporinpip27involvesdifferentproteindomains AT charleshachez interactionbetweenthesnaresyp121andtheplasmamembraneaquaporinpip27involvesdifferentproteindomains AT francoischaumont interactionbetweenthesnaresyp121andtheplasmamembraneaquaporinpip27involvesdifferentproteindomains |
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