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A Membrane Protein/Signaling Protein Interaction Network for Arabidopsis Version AMPv2

Interactions between membrane proteins and the soluble fraction are essential for signal transduction and for regulating nutrient transport. To gain insights into the membrane-based interactome, 3,852 open reading frames (ORFs) out of a target list of 8,383 representing membrane and signaling protei...

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Autores principales: Lalonde, Sylvie, Sero, Antoinette, Pratelli, Réjane, Pilot, Guillaume, Chen, Jin, Sardi, Maria I., Parsa, Saman A., Kim, Do-Young, Acharya, Biswa R., Stein, Erica V., Hu, Heng-Chen, Villiers, Florent, Takeda, Kouji, Yang, Yingzhen, Han, Yong S., Schwacke, Rainer, Chiang, William, Kato, Naohiro, Loqué, Dominique, Assmann, Sarah M., Kwak, June M., Schroeder, Julian I., Rhee, Seung Y., Frommer, Wolf B.
Formato: Texto
Lenguaje:English
Publicado: Frontiers Research Foundation 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3059934/
https://www.ncbi.nlm.nih.gov/pubmed/21423366
http://dx.doi.org/10.3389/fphys.2010.00024
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author Lalonde, Sylvie
Sero, Antoinette
Pratelli, Réjane
Pilot, Guillaume
Chen, Jin
Sardi, Maria I.
Parsa, Saman A.
Kim, Do-Young
Acharya, Biswa R.
Stein, Erica V.
Hu, Heng-Chen
Villiers, Florent
Takeda, Kouji
Yang, Yingzhen
Han, Yong S.
Schwacke, Rainer
Chiang, William
Kato, Naohiro
Loqué, Dominique
Assmann, Sarah M.
Kwak, June M.
Schroeder, Julian I.
Rhee, Seung Y.
Frommer, Wolf B.
author_facet Lalonde, Sylvie
Sero, Antoinette
Pratelli, Réjane
Pilot, Guillaume
Chen, Jin
Sardi, Maria I.
Parsa, Saman A.
Kim, Do-Young
Acharya, Biswa R.
Stein, Erica V.
Hu, Heng-Chen
Villiers, Florent
Takeda, Kouji
Yang, Yingzhen
Han, Yong S.
Schwacke, Rainer
Chiang, William
Kato, Naohiro
Loqué, Dominique
Assmann, Sarah M.
Kwak, June M.
Schroeder, Julian I.
Rhee, Seung Y.
Frommer, Wolf B.
author_sort Lalonde, Sylvie
collection PubMed
description Interactions between membrane proteins and the soluble fraction are essential for signal transduction and for regulating nutrient transport. To gain insights into the membrane-based interactome, 3,852 open reading frames (ORFs) out of a target list of 8,383 representing membrane and signaling proteins from Arabidopsis thaliana were cloned into a Gateway-compatible vector. The mating-based split ubiquitin system was used to screen for potential protein–protein interactions (pPPIs) among 490 Arabidopsis ORFs. A binary robotic screen between 142 receptor-like kinases (RLKs), 72 transporters, 57 soluble protein kinases and phosphatases, 40 glycosyltransferases, 95 proteins of various functions, and 89 proteins with unknown function detected 387 out of 90,370 possible PPIs. A secondary screen confirmed 343 (of 386) pPPIs between 179 proteins, yielding a scale-free network (r(2) = 0.863). Eighty of 142 transmembrane RLKs tested positive, identifying 3 homomers, 63 heteromers, and 80 pPPIs with other proteins. Thirty-one out of 142 RLK interactors (including RLKs) had previously been found to be phosphorylated; thus interactors may be substrates for respective RLKs. None of the pPPIs described here had been reported in the major interactome databases, including potential interactors of G-protein-coupled receptors, phospholipase C, and AMT ammonium transporters. Two RLKs found as putative interactors of AMT1;1 were independently confirmed using a split luciferase assay in Arabidopsis protoplasts. These RLKs may be involved in ammonium-dependent phosphorylation of the C-terminus and regulation of ammonium uptake activity. The robotic screening method established here will enable a systematic analysis of membrane protein interactions in fungi, plants and metazoa.
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spelling pubmed-30599342011-03-21 A Membrane Protein/Signaling Protein Interaction Network for Arabidopsis Version AMPv2 Lalonde, Sylvie Sero, Antoinette Pratelli, Réjane Pilot, Guillaume Chen, Jin Sardi, Maria I. Parsa, Saman A. Kim, Do-Young Acharya, Biswa R. Stein, Erica V. Hu, Heng-Chen Villiers, Florent Takeda, Kouji Yang, Yingzhen Han, Yong S. Schwacke, Rainer Chiang, William Kato, Naohiro Loqué, Dominique Assmann, Sarah M. Kwak, June M. Schroeder, Julian I. Rhee, Seung Y. Frommer, Wolf B. Front Physiol Physiology Interactions between membrane proteins and the soluble fraction are essential for signal transduction and for regulating nutrient transport. To gain insights into the membrane-based interactome, 3,852 open reading frames (ORFs) out of a target list of 8,383 representing membrane and signaling proteins from Arabidopsis thaliana were cloned into a Gateway-compatible vector. The mating-based split ubiquitin system was used to screen for potential protein–protein interactions (pPPIs) among 490 Arabidopsis ORFs. A binary robotic screen between 142 receptor-like kinases (RLKs), 72 transporters, 57 soluble protein kinases and phosphatases, 40 glycosyltransferases, 95 proteins of various functions, and 89 proteins with unknown function detected 387 out of 90,370 possible PPIs. A secondary screen confirmed 343 (of 386) pPPIs between 179 proteins, yielding a scale-free network (r(2) = 0.863). Eighty of 142 transmembrane RLKs tested positive, identifying 3 homomers, 63 heteromers, and 80 pPPIs with other proteins. Thirty-one out of 142 RLK interactors (including RLKs) had previously been found to be phosphorylated; thus interactors may be substrates for respective RLKs. None of the pPPIs described here had been reported in the major interactome databases, including potential interactors of G-protein-coupled receptors, phospholipase C, and AMT ammonium transporters. Two RLKs found as putative interactors of AMT1;1 were independently confirmed using a split luciferase assay in Arabidopsis protoplasts. These RLKs may be involved in ammonium-dependent phosphorylation of the C-terminus and regulation of ammonium uptake activity. The robotic screening method established here will enable a systematic analysis of membrane protein interactions in fungi, plants and metazoa. Frontiers Research Foundation 2010-09-22 /pmc/articles/PMC3059934/ /pubmed/21423366 http://dx.doi.org/10.3389/fphys.2010.00024 Text en Copyright © 2010 Lalonde, Sero, Pratelli, Pilot, Chen, Sardi, Parsa, Kim, Acharya, Stein, Hu, Villiers, Takeda, Yang, Han, Schwacke, Chiang, Kato, Loqué, Assmann, Kwak, Schroeder, Rhee and Frommer. http://www.frontiersin.org/licenseagreement This is an open-access article subject to an exclusive license agreement between the authors and the Frontiers Research Foundation, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are credited.
spellingShingle Physiology
Lalonde, Sylvie
Sero, Antoinette
Pratelli, Réjane
Pilot, Guillaume
Chen, Jin
Sardi, Maria I.
Parsa, Saman A.
Kim, Do-Young
Acharya, Biswa R.
Stein, Erica V.
Hu, Heng-Chen
Villiers, Florent
Takeda, Kouji
Yang, Yingzhen
Han, Yong S.
Schwacke, Rainer
Chiang, William
Kato, Naohiro
Loqué, Dominique
Assmann, Sarah M.
Kwak, June M.
Schroeder, Julian I.
Rhee, Seung Y.
Frommer, Wolf B.
A Membrane Protein/Signaling Protein Interaction Network for Arabidopsis Version AMPv2
title A Membrane Protein/Signaling Protein Interaction Network for Arabidopsis Version AMPv2
title_full A Membrane Protein/Signaling Protein Interaction Network for Arabidopsis Version AMPv2
title_fullStr A Membrane Protein/Signaling Protein Interaction Network for Arabidopsis Version AMPv2
title_full_unstemmed A Membrane Protein/Signaling Protein Interaction Network for Arabidopsis Version AMPv2
title_short A Membrane Protein/Signaling Protein Interaction Network for Arabidopsis Version AMPv2
title_sort membrane protein/signaling protein interaction network for arabidopsis version ampv2
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3059934/
https://www.ncbi.nlm.nih.gov/pubmed/21423366
http://dx.doi.org/10.3389/fphys.2010.00024
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