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Christophe Masselon

Researcher at University of Grenoble

Publications -  90
Citations -  5709

Christophe Masselon is an academic researcher from University of Grenoble. The author has contributed to research in topics: Mass spectrometry & Fourier transform ion cyclotron resonance. The author has an hindex of 39, co-authored 89 publications receiving 5190 citations. Previous affiliations of Christophe Masselon include École Polytechnique Fédérale de Lausanne & French Institute of Health and Medical Research.

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AT_CHLORO, a Comprehensive Chloroplast Proteome Database with Subplastidial Localization and Curated Information on Envelope Proteins

TL;DR: A unique knowledge base containing extensive information on the proteins identified in envelope fractions was obtained, allowing new insights into this membrane system to be revealed, and the data obtained provide unexpected information about plastidial or subplastidials localization of some proteins that were not suspected to be associated to this membranes system.
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Isotope dilution strategies for absolute quantitative proteomics

TL;DR: A critical overview of protein quantification methodologies which rely on the isotope dilution principle are presented, which have been implemented in the proteomic field only recently.
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Multiplexed and data-independent tandem mass spectrometry for global proteome profiling

TL;DR: These approaches aim to fully utilize the capabilities of mass spectrometers to maximize tandem MS acquisition time and to address the need to expand the detectable dynamic range, lower the limit of detection, and improve the overall confidence of peptide identifications and relative protein quantification measurements.
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Enrichment of integral membrane proteins for proteomic analysis using liquid chromatography-tandem mass spectrometry.

TL;DR: A sample preparation method combining carbonate extraction, surfactant-free organic solvent-assisted solubilization, and proteolysis was developed and demonstrated to target the membrane subproteome of Deinococcus radiodurans, validates the efficacy of the described sample preparation technique to isolate andsolubilize hydrophobic integral membrane proteins from complex protein mixtures.