G-quadruplex ligands as potent regulators of lysosomes
Article 2023 en
Authors
LF
Lucille Ferret
KA
Karla Alvarez-Valadez
JR
Jennifer Rivière
Abstract
1 min read
Guanine-quadruplex structures (G4) are unusual nucleic acid conformations formed by guanine-rich DNA and RNA sequences and known to control gene expression mechanisms, from transcription to protein synthesis. So far, a number of molecules that recognize G4 have been developed for potential therapeutic applications in human pathologies, including cancer and infectious diseases. These molecules are called G4 ligands. When the biological effects of G4 ligands are studied, the analysis is often limited to nucleic acid targets. However, recent evidence indicates that G4 ligands may target other cellular components and compartments such as lysosomes and mitochondria. Here, we summarize our current knowledge of the regulation of lysosome by G4 ligands, underlying their potential functional impact on lysosome biology and autophagic flux, as well as on the transcriptional regulation of lysosomal genes. We outline the consequences of these effects on cell fate decisions and we systematically analyzed G4-prone sequences within the promoter of 435 lysosome-related genes. Finally, we propose some hypotheses about the mechanisms involved in the regulation of lysosomes by G4 ligands.
Lucille Ferret, Jonathan Pol, Allan Sauvat, Gautier Stoll, Karla Alvarez-Valadez, Alexandra Müller, Julie Le Naour, F. Peyre, Gerasimos Anagnostopoulos, Isabelle Martins, Maria Chiara Maiuri, Harald Wodrich, Lionel Guittat, Jean‐Louis Mergny, Guido Guido Kroemer, Mojgan Djavaheri‐Mergny
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