Quantitative Proteomics-Based Analysis Supports a Significant Role of GTG Proteins in Regulation of ABA Response in Arabidopsis Roots

被引:27
作者
Alvarez, Sophie [1 ]
Choudhury, Swarup Roy [1 ]
Hicks, Leslie M. [1 ]
Pandey, Sona [1 ]
机构
[1] Donald Danforth Plant Sci Ctr, St Louis, MO 63132 USA
关键词
GTG proteins; ABA; quantitative proteomics; iTRAQ; Arabidopsis; CHELATASE H-SUBUNIT; MOLECULAR-BASIS; FLOWERING TIME; GUARD-CELLS; CROSS-TALK; EXPRESSION; STRESS; GROWTH; ITRAQ; DEHYDRATION;
D O I
10.1021/pr301159u
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Abscisic acid (ABA) is proposed to be perceived by multiple receptors in plants. We have previously reported on the role of two GPCR-type G-proteins (GTG proteins) as plasma membrane-localized ABA receptors in Arabidopsis thaliana. However, due to the presence of multiple transmembrane domains, detailed structural and biochemical characterization of GTG proteins remains limited. Since ABA induces substantial changes in the proteome of plants, a labeling LC-based quantitative proteomics approach was applied to elucidate the global effects and possible downstream targets of GTG1/GTG2 proteins. Quantitative differences in protein abundance between wild-type and gtg1gtg2 were analyzed for evaluation of the effect of ABA on the root proteome and its dependence on the presence of functional GTG1/GTG2 proteins. The results presented in this study reveal the most comprehensive ABA-responsive root proteome reported to date in Arabidopsis. Notably, the majority of ABA responsive proteins required the presence of GTG proteins, supporting their key role in ABA signaling. These observations were further confirmed by additional experiments Overall, comparison of the ABA-dependent protein abundance changes in wild-type versus gtg1gtg2 provides clues to their possible links with some of the well-established effectors of the ABA signaling pathways and their role in mediating phytohormone cross-talk.
引用
收藏
页码:1487 / 1501
页数:15
相关论文
共 55 条
[1]   ABA-Dependent and -Independent G-Protein Signaling in Arabidopsis Roots Revealed through an iTRAQ Proteomics Approach [J].
Alvarez, Sophie ;
Hicks, Leslie M. ;
Pandey, Sona .
JOURNAL OF PROTEOME RESEARCH, 2011, 10 (07) :3107-3122
[2]   News on ABA transport, protein degradation, and ABFs/WRKYs in ABA signaling [J].
Antoni, Regina ;
Rodriguez, Lesia ;
Gonzalez-Guzman, Miguel ;
Pizzio, Gaston A. ;
Rodriguez, Pedro L. .
CURRENT OPINION IN PLANT BIOLOGY, 2011, 14 (05) :547-553
[3]   PYRABACTIN RESISTANCE1-LIKE8 Plays an Important Role for the Regulation of Abscisic Acid Signaling in Root [J].
Antoni, Regina ;
Gonzalez-Guzman, Miguel ;
Rodriguez, Lesia ;
Peirats-Llobet, Marta ;
Pizzio, Gaston A. ;
Fernandez, Maria A. ;
De Winne, Nancy ;
De Jaeger, Geert ;
Dietrich, Daniela ;
Bennett, Malcom J. ;
Rodriguez, Pedro L. .
PLANT PHYSIOLOGY, 2013, 161 (02) :931-941
[4]   Arabidopsis CPK3 plays extensive roles in various biological and environmental responses [J].
Arimura, Gen-ichiro ;
Sawasaki, Tatsuya .
PLANT SIGNALING & BEHAVIOR, 2010, 5 (10) :1263-1265
[5]   Regulation of flowering time by FVE, a retinoblastoma-associated protein [J].
Ausín, I ;
Alonso-Blanco, C ;
Jarillo, JA ;
Ruiz-García, L ;
Martínez-Zapater, JM .
NATURE GENETICS, 2004, 36 (02) :162-166
[6]   Genome-scale proteomics reveals Arabidopsis thaliana gene models and proteome dynamics [J].
Baerenfaller, Katja ;
Grossmann, Jonas ;
Grobei, Monica A. ;
Hull, Roger ;
Hirsch-Hoffmann, Matthias ;
Yalovsky, Shaul ;
Zimmermann, Philip ;
Grossniklaus, Ueli ;
Gruissem, Wilhelm ;
Baginsky, Sacha .
SCIENCE, 2008, 320 (5878) :938-941
[7]   Quantitative transcriptomic analysis of abscisic acid-induced and reactive oxygen species-dependent expression changes and proteomic profiling in Arabidopsis suspension cells [J].
Boehmer, Maik ;
Schroeder, Julian I. .
PLANT JOURNAL, 2011, 67 (01) :105-118
[8]   Evidence for Network Evolution in an Arabidopsis Interactome Map [J].
Braun, Pascal ;
Carvunis, Anne-Ruxandra ;
Charloteaux, Benoit ;
Dreze, Matija ;
Ecker, Joseph R. ;
Hill, David E. ;
Roth, Frederick P. ;
Vidal, Marc ;
Galli, Mary ;
Balumuri, Padmavathi ;
Bautista, Vanessa ;
Chesnut, Jonathan D. ;
Kim, Rosa Cheuk ;
de los Reyes, Chris ;
Gilles, Patrick, II ;
Kim, Christopher J. ;
Matrubutham, Uday ;
Mirchandani, Jyotika ;
Olivares, Eric ;
Patnaik, Suswapna ;
Quan, Rosa ;
Ramaswamy, Gopalakrishna ;
Shinn, Paul ;
Swamilingiah, Geetha M. ;
Wu, Stacy ;
Ecker, Joseph R. ;
Dreze, Matija ;
Byrdsong, Danielle ;
Dricot, Amelie ;
Duarte, Melissa ;
Gebreab, Fana ;
Gutierrez, Bryan J. ;
MacWilliams, Andrew ;
Monachello, Dario ;
Mukhtar, M. Shahid ;
Poulin, Matthew M. ;
Reichert, Patrick ;
Romero, Viviana ;
Tam, Stanley ;
Waaijers, Selma ;
Weiner, Evan M. ;
Vidal, Marc ;
Hill, David E. ;
Braun, Pascal ;
Galli, Mary ;
Carvunis, Anne-Ruxandra ;
Cusick, Michael E. ;
Dreze, Matija ;
Romero, Viviana ;
Roth, Frederick P. .
SCIENCE, 2011, 333 (6042) :601-607
[9]   Integration of abscisic acid signalling into plant responses [J].
Christmann, A. ;
Moes, D. ;
Himmelbach, A. ;
Yang, Y. ;
Tang, Y. ;
Grill, E. .
PLANT BIOLOGY, 2006, 8 (03) :314-325
[10]   Abscisic Acid: Emergence of a Core Signaling Network [J].
Cutler, Sean R. ;
Rodriguez, Pedro L. ;
Finkelstein, Ruth R. ;
Abrams, Suzanne R. .
ANNUAL REVIEW OF PLANT BIOLOGY, VOL 61, 2010, 61 :651-679