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FLEXIQuant-LF to quantify protein modification extent in label-free proteomics data.


ABSTRACT: Improvements in LC-MS/MS methods and technology have enabled the identification of thousands of modified peptides in a single experiment. However, protein regulation by post-translational modifications (PTMs) is not binary, making methods to quantify the modification extent crucial to understanding the role of PTMs. Here, we introduce FLEXIQuant-LF, a software tool for large-scale identification of differentially modified peptides and quantification of their modification extent without knowledge of the types of modifications involved. We developed FLEXIQuant-LF using label-free quantification of unmodified peptides and robust linear regression to quantify the modification extent of peptides. As proof of concept, we applied FLEXIQuant-LF to data-independent-acquisition (DIA) data of the anaphase promoting complex/cyclosome (APC/C) during mitosis. The unbiased FLEXIQuant-LF approach to assess the modification extent in quantitative proteomics data provides a better understanding of the function and regulation of PTMs. The software is available at https://github.com/SteenOmicsLab/FLEXIQuantLF.

SUBMITTER: Schlaffner CN 

PROVIDER: S-EPMC7721442 | biostudies-literature | 2020 Dec

REPOSITORIES: biostudies-literature

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FLEXIQuant-LF to quantify protein modification extent in label-free proteomics data.

Schlaffner Christoph N CN   Kahnert Konstantin K   Muntel Jan J   Chauhan Ruchi R   Renard Bernhard Y BY   Steen Judith A JA   Steen Hanno H  

eLife 20201207


Improvements in LC-MS/MS methods and technology have enabled the identification of thousands of modified peptides in a single experiment. However, protein regulation by post-translational modifications (PTMs) is not binary, making methods to quantify the modification extent crucial to understanding the role of PTMs. Here, we introduce FLEXIQuant-LF, a software tool for large-scale identification of differentially modified peptides and quantification of their modification extent without knowledge  ...[more]

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