Regulation of yeast central metabolism by enzyme phosphorylation

被引:122
作者
Oliveira, Ana Paula [1 ]
Ludwig, Christina [1 ]
Picotti, Paola [1 ]
Kogadeeva, Maria [1 ]
Aebersold, Ruedi [1 ,2 ]
Sauer, Uwe [1 ]
机构
[1] Swiss Fed Inst Technol, Inst Mol Syst Biol, Dept Biol, CH-8093 Zurich, Switzerland
[2] Univ Zurich, Fac Sci, Zurich, Switzerland
关键词
metabolic flux; metabolism; phosphoproteome; post-translational regulation; selected reaction monitoring; PYRUVATE-DEHYDROGENASE COMPLEX; PROTEIN-PHOSPHORYLATION; SACCHAROMYCES-CEREVISIAE; QUANTITATIVE-ANALYSIS; CENTRAL CARBON; KINASE; REVEALS; FLUXES; ROLES; SCALE;
D O I
10.1038/msb.2012.55
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
As a frequent post-translational modification, protein phosphorylation regulates many cellular processes. Although several hundred phosphorylation sites have been mapped to metabolic enzymes in Saccharomyces cerevisiae, functionality was demonstrated for few of them. Here, we describe a novel approach to identify in vivo functionality of enzyme phosphorylation by combining flux analysis with proteomics and phosphoproteomics. Focusing on the network of 204 enzymes that constitute the yeast central carbon and amino-acid metabolism, we combined protein and phosphoprotein levels to identify 35 enzymes that change their degree of phosphorylation during growth under five conditions. Correlations between previously determined intracellular fluxes and phosphoprotein abundances provided first functional evidence for five novel phosphoregulated enzymes in this network, adding to nine known phosphoenzymes. For the pyruvate dehydrogenase complex E1 alpha subunit Pda1 and the newly identified phosphoregulated glycerol-3-phosphate dehydrogenase Gpd1 and phosphofructose-1-kinase complex beta subunit Pfk2, we then validated functionality of specific phosphosites through absolute peptide quantification by targeted mass spectrometry, metabolomics and physiological flux analysis in mutants with genetically removed phosphosites. These results demonstrate the role of phosphorylation in controlling the metabolic flux realised by these three enzymes.
引用
收藏
页数:13
相关论文
共 50 条
[1]   The two isoenzymes for yeast NAD(+)-dependent glycerol 3-phosphate dehydrogenase encoded by GPD1 and GPD2 have distinct roles in osmoadaptation and redox regulation [J].
Ansell, R ;
Granath, K ;
Hohmann, S ;
Thevelein, JM ;
Adler, L .
EMBO JOURNAL, 1997, 16 (09) :2179-2187
[2]   The Crystal Structures of Eukaryotic Phosphofructokinases from Baker's Yeast and Rabbit Skeletal Muscle [J].
Banaszak, Katarzyna ;
Mechin, Ingrid ;
Obmolova, Galina ;
Oldham, Michael ;
Chang, Simon H. ;
Ruiz, Teresa ;
Radermacher, Michael ;
Kopperschlaeger, Gerhard ;
Rypniewski, Wojciech .
JOURNAL OF MOLECULAR BIOLOGY, 2011, 407 (02) :284-297
[3]   ROLES OF GLYCEROL AND GLYCEROL-3-PHOSPHATE DEHYDROGENASE (NAD+) IN ACQUIRED OSMOTOLERANCE OF SACCHAROMYCES-CEREVISIAE [J].
BLOMBERG, A ;
ADLER, L .
JOURNAL OF BACTERIOLOGY, 1989, 171 (02) :1087-1092
[4]   Phosphoproteomic Analysis Reveals Interconnected System-Wide Responses to Perturbations of Kinases and Phosphatases in Yeast [J].
Bodenmiller, Bernd ;
Wanka, Stefanie ;
Kraft, Claudine ;
Urban, Joerg ;
Campbell, David ;
Pedrioli, Patrick G. ;
Gerrits, Bertran ;
Picotti, Paola ;
Lam, Henry ;
Vitek, Olga ;
Brusniak, Mi-Youn ;
Roschitzki, Bernd ;
Zhang, Chao ;
Shokat, Kevan M. ;
Schlapbach, Ralph ;
Colman-Lerner, Alejandro ;
Nolan, Garry P. ;
Nesvizhskii, Alexey I. ;
Peter, Matthias ;
Loewith, Robbie ;
von Mering, Christian ;
Aebersold, Ruedi .
SCIENCE SIGNALING, 2010, 3 (153)
[5]   QUANTITATIVE ANALYSIS OF PROTEIN PHOSPHORYLATION ON A SYSTEM-WIDE SCALE BY MASS SPECTROMETRY-BASED PROTEOMICS [J].
Bodenmiller, Bernd ;
Aebersold, Ruedi .
METHODS IN ENZYMOLOGY, VOL 470: GUIDE TO YEAST GENETICS:: FUNCTIONAL GENOMICS, PROTEOMICS, AND OTHER SYSTEMS ANALYSIS, 2ND EDITION, 2010, 470 :317-334
[6]   PhosphoPep-a database of protein phosphorylation sites in model organisms [J].
Bodenmiller, Bernd ;
Campbell, David ;
Gerrits, Bertran ;
Lam, Henry ;
Jovanovic, Marko ;
Picotti, Paola ;
Schlapbach, Ralph ;
Aebersold, Ruedi .
NATURE BIOTECHNOLOGY, 2008, 26 (12) :1339-1340
[7]   Metabolic regulation rather than de novo enzyme synthesis dominates the osmo-adaptation of yeast [J].
Bouwman, Jildau ;
Kiewiet, Jose ;
Lindenbergh, Alexander ;
van Eunen, Karen ;
Siderius, Marco ;
Bakker, Barbara M. .
YEAST, 2011, 28 (01) :43-53
[8]   A Global Protein Kinase and Phosphatase Interaction Network in Yeast [J].
Breitkreutz, Ashton ;
Choi, Hyungwon ;
Sharom, Jeffrey R. ;
Boucher, Lorrie ;
Neduva, Victor ;
Larsen, Brett ;
Lin, Zhen-Yuan ;
Breitkreutz, Bobby-Joe ;
Stark, Chris ;
Liu, Guomin ;
Ahn, Jessica ;
Dewar-Darch, Danielle ;
Reguly, Teresa ;
Tang, Xiaojing ;
Almeida, Ricardo ;
Qin, Zhaohui Steve ;
Pawson, Tony ;
Gingras, Anne-Claude ;
Nesvizhskii, Alexey I. ;
Tyers, Mike .
SCIENCE, 2010, 328 (5981) :1043-1046
[9]   Ultrahigh Performance Liquid Chromatography-Tandem Mass Spectrometry Method for Fast and Robust Quantification of Anionic and Aromatic Metabolites [J].
Buescher, Joerg Martin ;
Moco, Sofia ;
Sauer, Uwe ;
Zamboni, Nicola .
ANALYTICAL CHEMISTRY, 2010, 82 (11) :4403-4412