Quantitation of Vacuolar Sugar Transporter Abundance Changes Using QconCAT Synthtetic Peptides.

PubWeight™: 0.75‹?›

🔗 View Article (PMID 27148277)

Published in Front Plant Sci on April 12, 2016

Authors

Heidi Pertl-Obermeyer1, Oliver Trentmann2, Kerstin Duscha2, H Ekkehard Neuhaus2, Waltraud X Schulze1

Author Affiliations

1: Department of Plant Systems Biology, University of Hohenheim Stuttgart, Germany.
2: Plant Physiology, University of Kaiserslautern Kaiserslautern, Germany.

Articles cited by this

MaxQuant enables high peptide identification rates, individualized p.p.b.-range mass accuracies and proteome-wide protein quantification. Nat Biotechnol (2008) 38.00

Global quantification of mammalian gene expression control. Nature (2011) 22.36

Andromeda: a peptide search engine integrated into the MaxQuant environment. J Proteome Res (2011) 14.82

Exponentially modified protein abundance index (emPAI) for estimation of absolute protein amount in proteomics by the number of sequenced peptides per protein. Mol Cell Proteomics (2005) 10.67

Absolute quantification of proteins by LCMSE: a virtue of parallel MS acquisition. Mol Cell Proteomics (2005) 6.37

When defense pathways collide. The response of Arabidopsis to a combination of drought and heat stress. Plant Physiol (2004) 3.80

Drought, salt, and temperature stress-induced metabolic rearrangements and regulatory networks. J Exp Bot (2012) 3.31

Drought- and salt-tolerant plants result from overexpression of the AVP1 H+-pump. Proc Natl Acad Sci U S A (2001) 2.50

Vacuolar transporters and their essential role in plant metabolism. J Exp Bot (2006) 2.41

Multiplexed absolute quantification for proteomics using concatenated signature peptides encoded by QconCAT genes. Nat Protoc (2006) 2.37

Quantitation in mass-spectrometry-based proteomics. Annu Rev Plant Biol (2010) 2.14

Optimized fast and sensitive acquisition methods for shotgun proteomics on a quadrupole orbitrap mass spectrometer. J Proteome Res (2012) 2.11

Drought stress and reactive oxygen species: Production, scavenging and signaling. Plant Signal Behav (2008) 2.10

Targeted proteomic quantification on quadrupole-orbitrap mass spectrometer. Mol Cell Proteomics (2012) 2.04

The coming age of complete, accurate, and ubiquitous proteomes. Mol Cell (2013) 1.77

TONOPLAST TRANSPORTERS: Organization and Function. Annu Rev Plant Physiol Plant Mol Biol (2001) 1.73

MASCP Gator: an aggregation portal for the visualization of Arabidopsis proteomics data. Plant Physiol (2010) 1.59

The APEX Quantitative Proteomics Tool: generating protein quantitation estimates from LC-MS/MS proteomics results. BMC Bioinformatics (2008) 1.54

Absolute multiplexed quantitative analysis of protein expression during muscle development using QconCAT. Mol Cell Proteomics (2007) 1.45

The monosaccharide transporter(-like) gene family in Arabidopsis. FEBS Lett (2007) 1.44

Differential multisite phosphorylation of the trehalose-6-phosphate synthase gene family in Arabidopsis thaliana: a mass spectrometry-based process for multiparallel peptide library phosphorylation analysis. Mol Cell Proteomics (2005) 1.42

How specific is my SRM?: The issue of precursor and product ion redundancy. Proteomics (2009) 1.35

Comprehensive quantitative analysis of central carbon and amino-acid metabolism in Saccharomyces cerevisiae under multiple conditions by targeted proteomics. Mol Syst Biol (2011) 1.35

Molecular identification and physiological characterization of a novel monosaccharide transporter from Arabidopsis involved in vacuolar sugar transport. Plant Cell (2006) 1.31

Cold acclimation induces changes in Arabidopsis tonoplast protein abundance and activity and alters phosphorylation of tonoplast monosaccharide transporters. Plant J (2011) 1.21

The dawn of plant salt tolerance genetics. Trends Plant Sci (2000) 1.21

Proton-driven sucrose symport and antiport are provided by the vacuolar transporters SUC4 and TMT1/2. Plant J (2011) 1.19

Vacuolar transporters in their physiological context. Annu Rev Plant Biol (2012) 1.18

ERD6, a cDNA clone for an early dehydration-induced gene of Arabidopsis, encodes a putative sugar transporter. Biochim Biophys Acta (1998) 1.17

Global absolute quantification of a proteome: Challenges in the deployment of a QconCAT strategy. Proteomics (2011) 1.16

Functional analysis of an Arabidopsis thaliana abiotic stress-inducible facilitated diffusion transporter for monosaccharides. J Biol Chem (2009) 1.11

The Clp protease system; a central component of the chloroplast protease network. Biochim Biophys Acta (2010) 1.11

Absolute quantification of the glycolytic pathway in yeast: deployment of a complete QconCAT approach. Mol Cell Proteomics (2011) 1.11

Salt stress induces an increased expression of V-type H(+)-ATPase in mature sugar beet leaves. Plant Mol Biol (1996) 1.06

Targeted proteomics for Chlamydomonas reinhardtii combined with rapid subcellular protein fractionation, metabolomics and metabolic flux analyses. Mol Biosyst (2010) 1.06

Proteomics approaches to understand protein phosphorylation in pathway modulation. Curr Opin Plant Biol (2010) 0.96

The use of heavy nitrogen in quantitative proteomics experiments in plants. Trends Plant Sci (2011) 0.90

Phosphoproteomic Analyses Reveal Early Signaling Events in the Osmotic Stress Response. Plant Physiol (2014) 0.90

A member of the mitogen-activated protein 3-kinase family is involved in the regulation of plant vacuolar glucose uptake. Plant J (2011) 0.89

Cryoprotection by glucose, sucrose, and raffinose to chloroplast thylakoids. Plant Physiol (1980) 0.87

Yeast expression proteomics by high-resolution mass spectrometry. Methods Enzymol (2010) 0.85

Dissecting the subcellular compartmentation of proteins and metabolites in arabidopsis leaves using non-aqueous fractionation. Mol Cell Proteomics (2014) 0.83

Sugar transport across the plant vacuolar membrane: nature and regulation of carrier proteins. Curr Opin Plant Biol (2015) 0.83

Molecular and physiological characterisation of a 14-3-3 protein from lily pollen grains regulating the activity of the plasma membrane H+ ATPase during pollen grain germination and tube growth. Planta (2001) 0.83

Arabidopsis AtSUC2 and AtSUC4, encoding sucrose transporters, are required for abiotic stress tolerance in an ABA-dependent pathway. Physiol Plant (2014) 0.82

Precision, proteome coverage, and dynamic range of Arabidopsis proteome profiling using (15)N metabolic labeling and label-free approaches. Mol Cell Proteomics (2012) 0.81

Profiling of sugar transporter genes in grapevine coping with water deficit. FEBS Lett (2014) 0.78