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Journal Article

Modulation of cellular transcriptome and proteome composition by azidohomoalanine—implications on click chemistry–based secretome analysis

Friederike Kirschner; Danielle Arnold-Schild; Christian Leps; Mateusz Krzysztof Łącki; Matthias Klein; Yannic Chen; Annekathrin Ludt; Federico Marini; Can Kücük; Lara Stein; Ute Distler; Malte Sielaff; Thomas Michna; Kristina Riegel; Krishnaraj Rajalingam; Tobias Bopp; Stefan Tenzer; Hansjörg Schild
Journal of Molecular Medicine · Vol. 101, Issue 7 · pp. 855-867 · 2023

Abstract

The analysis of the secretome provides important information on proteins defining intercellular communication and the recruitment and behavior of cells in specific tissues. Especially in the context of tumors, secretome data can support decisions for diagnosis and therapy. The mass spectrometry–based analysis of cell-conditioned media is widely used for the unbiased characterization of cancer secretomes in vitro. Metabolic labeling using azide-containing amino acid analogs in combination with click chemistry facilitates this type of analysis in the presence of serum, preventing serum starvation-induced effects. The modified amino acid analogs, however, are less efficiently incorporated into newly synthesized proteins and may perturb protein folding. Combining transcriptome and proteome analysis, we elucidate in detail the effects of metabolic labeling with the methionine analog azidohomoalanine (AHA) on gene and protein expression. Our data reveal that 15–39% of the proteins detected in the secretome displayed changes in transcript and protein expression induced by AHA labeling. Gene Ontology (GO) analyses indicate that metabolic labeling using AHA leads to induction of cellular stress and apoptosis-related pathways and provide first insights on how this affects the composition of the secretome on a global scale. Key messages Azide-containing amino acid analogs affect gene expression profiles. Azide-containing amino acid analogs influence cellular proteome. Azidohomoalanine labeling induces cellular stress and apoptotic pathways. Secretome consists of proteins with dysregulated expression profiles.

Bibliographic Information

JournalJournal of Molecular Medicine
PublisherSpringer
Publication Date2023-07-01
Publication Year2023
Volume101
Issue7
Pages855-867
Document TypeJournal Article
Print ISSN0946-2716
eISSN1432-1440
DOI10.1007/s00109-023-02333-4

Access Information

NARA Access Coverage1922-01-01~Current
Journal Homepagehttps://www.springer.com/journal/109
Publisher PageOpen Publisher Page
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