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...

Full description

Bibliographic Details
Main Authors: Timothée Laloux, Irwin Matyjaszczyk, Simon Beaudelot, Charles Hachez, François Chaumont
Format: Article
Language:English
Published: Frontiers Media S.A. 2021-01-01
Series:Frontiers in Plant Science
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fpls.2020.631643/full
id doaj-78a74a9f142f43fd8019509a73d73a2c
record_format Article
spelling 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
_version_ 1724333707823677440