AbstractWe review and demonstrate how an empirical Bayes method, shrinking a protein's sample variance towards a pooled estimate, leads to far more powerful and stable inference to detect significant changes in protein abundance compared to ordinary t-tests. Using examples from isobaric mass labelled proteomic experiments we show how to analyze data from multiple experiments simultaneously, and discuss the effects of missing data on the inference. We also present easy to use open source software for normalization of mass spectrometry data and inference based on moderated test statistics
Discovery of "signature" protein profiles that distinguish disease states (eg, malignant, ...
International audienceResults from mass spectrometry based quantitative proteomics analysis correspo...
The measurement of change in biological systems through protein quantification is a central theme in...
We review and demonstrate how an empirical Bayes method, shrinking a protein's sample variance towar...
AbstractWe review and demonstrate how an empirical Bayes method, shrinking a protein's sample varian...
Background: Advances in mass spectrometry-based proteomics have enabled the incorporation of proteom...
Advances in mass spectrometry-based proteomics have enabled the incorporation of proteomic data into...
A major goal in proteomics is the comprehensive and accurate description of a proteome. This task in...
Label-free shotgun mass spectrometry enables the detection of significant changes in protein abundan...
Mass spectrometry (MS) has become an accessible tool for whole proteome quantitation with the abilit...
Mass spectrometry (MS) has become an accessible tool for whole proteome quantitation with the abilit...
Modern biology is faced with vast amounts of data that contain valuable information yet to be extrac...
International audienceInferring protein abundances from peptide intensities is the key step in quant...
Proteomics experiments commonly aim to estimate and detect differential abundance across all express...
In quantitative proteomics, the intensity of a peptide ion in mass spectra is an estimate of that pe...
Discovery of "signature" protein profiles that distinguish disease states (eg, malignant, ...
International audienceResults from mass spectrometry based quantitative proteomics analysis correspo...
The measurement of change in biological systems through protein quantification is a central theme in...
We review and demonstrate how an empirical Bayes method, shrinking a protein's sample variance towar...
AbstractWe review and demonstrate how an empirical Bayes method, shrinking a protein's sample varian...
Background: Advances in mass spectrometry-based proteomics have enabled the incorporation of proteom...
Advances in mass spectrometry-based proteomics have enabled the incorporation of proteomic data into...
A major goal in proteomics is the comprehensive and accurate description of a proteome. This task in...
Label-free shotgun mass spectrometry enables the detection of significant changes in protein abundan...
Mass spectrometry (MS) has become an accessible tool for whole proteome quantitation with the abilit...
Mass spectrometry (MS) has become an accessible tool for whole proteome quantitation with the abilit...
Modern biology is faced with vast amounts of data that contain valuable information yet to be extrac...
International audienceInferring protein abundances from peptide intensities is the key step in quant...
Proteomics experiments commonly aim to estimate and detect differential abundance across all express...
In quantitative proteomics, the intensity of a peptide ion in mass spectra is an estimate of that pe...
Discovery of "signature" protein profiles that distinguish disease states (eg, malignant, ...
International audienceResults from mass spectrometry based quantitative proteomics analysis correspo...
The measurement of change in biological systems through protein quantification is a central theme in...