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New Approaches for Absolute Quantification of Stable‐Isotope‐Labeled Peptide Standards for Targeted Proteomics Based on a UV Active Tag
Authors:Karsten Schnatbaum  Victor Solis‐Mezarino  Daniil Pokrovsky  Frederike Schfer  Dennis Nagl  Lars Hornberger  Johannes Zerweck  Tobias Knaute  Julia Avramova‐Nehmer  Mike Schutkowski  Veit Hornung  Holger Wenschuh  Moritz Carl Vlker‐Albert  Axel Imhof  Ulf Reimer
Institution:Karsten Schnatbaum,Victor Solis‐Mezarino,Daniil Pokrovsky,Frederike Schäfer,Dennis Nagl,Lars Hornberger,Johannes Zerweck,Tobias Knaute,Julia Avramova‐Nehmer,Mike Schutkowski,Veit Hornung,Holger Wenschuh,Moritz Carl Völker‐Albert,Axel Imhof,Ulf Reimer
Abstract:Targeted proteomics depends on the availability of stable isotope labeled (SIL) peptide standards, which for absolute protein quantification need to be absolutely quantified. In the present study, three new approaches for absolute quantification of SIL peptides are developed. All approaches rely on a quantification tag (Qtag) with a specific UV absorption. The Qtag is attached to the peptide during synthesis and is removed by tryptic digestion under standard proteomics workflow conditions. While one quantification method (method A) is designed to allow the fast and economic production of absolutely quantified SIL peptides, two other methods (methods B and C) are developed to enable the straightforward re‐quantification of SIL peptides after reconstitution to control and monitor known problems related to peptide solubility, precipitation, and adhesion to vials. All methods yield consistent results when compared to each other and when compared to quantification by amino acid analysis. The precise quantitation methods are used to characterize the in vivo specificity of the H3 specific histone methyltransferase EZH2.
Keywords:absolute quantification  histone quantification  reference peptides  targeted proteomics
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