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Epitranscriptomics & Cancer Adaptation : A.David

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Our research work focuses on the contribution of post-transcriptional mechanisms on cancer cell adaptation, in particular RNA epigenetic & translational control.

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Added by lklinares
Group name EquipeLL
Item Type Journal Article
Title Simultaneous Measurement of Metabolite Concentration and Isotope Incorporation by Mass Spectrometry
Creator Heuillet et al.
Author Maud Heuillet
Author Pierre Millard
Author Madi Y. Cissé
Author Laetitia K. Linares
Author Fabien Létisse
Author Serge Manié
Author Laurent Le Cam
Author Jean-Charles Portais
Author Floriant Bellvert
Abstract Studies of the topology, functioning, and regulation of metabolic systems are based on two main types of information that can be measured by mass spectrometry: the (absolute or relative) concentration of metabolites and their isotope incorporation in 13C-labeling experiments. These data are currently obtained from two independent experiments because the 13C-labeled internal standard (IS) used to determine the concentration of a given metabolite overlaps the 13C-mass fractions from which its 13C-isotopologue distribution (CID) is quantified. Here, we developed a generic method with a dedicated processing workflow to obtain these two sets of information simultaneously in a unique sample collected from a single cultivation, thereby reducing by a factor of 2 both the number of cultivations to perform and the number of samples to collect, prepare, and analyze. The proposed approach is based on an IS labeled with other isotope(s) that can be resolved from the 13C-mass fractions of interest. As proof-of-principle, we analyzed amino acids using a doubly labeled 15N13C-cell extract as IS. Extensive evaluation of the proposed approach shows a similar accuracy and precision compared to state-of-the-art approaches. We demonstrate the value of this approach by investigating the dynamic response of amino acids metabolism in mammalian cells upon activation of the protein kinase R (PKR)-like endoplasmic reticulum kinase (PERK), a key component of the unfolded protein response. Integration of metabolite concentrations and isotopic profiles reveals a reduced de novo biosynthesis of amino acids upon PERK activation. The proposed approach is generic and can be applied to other (micro)organisms, analytical platforms, isotopic tracers, or classes of metabolites.
Publication Analytical Chemistry
Volume 92
Issue 8
Pages 5890-5896
Date 04 21, 2020
Journal Abbr Anal Chem
Language eng
DOI 10.1021/acs.analchem.9b05709
ISSN 1520-6882
Library Catalog PubMed
Extra PMID: 32212637
Date Added 2024/12/03 - 09:12:56
Date Modified 2024/12/03 - 09:12:56
Notes and Attachments PubMed entry (Attachment)


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