4.6 Article

A Cytoplasmic Negative Regulator Isoform of ATF7 Impairs ATF7 and ATF2 Phosphorylation and Transcriptional Activity

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PLOS ONE
卷 6, 期 8, 页码 -

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PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pone.0023351

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  1. Universite de Strasbourg
  2. Centre National de la Recherche Scientifique
  3. Ministere de l'Enseignement Superieur et de la Recherche
  4. Ligue contre le Cancer - Comites Haut-Rhin et Bas-Rhin
  5. Fondation pour la Recherche Medicale, Alsace contre le Cancer
  6. Ecos-Sud [A06B02]
  7. Institut National du Cancer [PLBIO-127]

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Alternative splicing and post-translational modifications are processes that give rise to the complexity of the proteome. The nuclear ATF7 and ATF2 (activating transcription factor) are structurally homologous leucine zipper transcription factors encoded by distinct genes. Stress and growth factors activate ATF2 and ATF7 mainly via sequential phosphorylation of two conserved threonine residues in their activation domain. Distinct protein kinases, among which mitogen-activated protein kinases (MAPK), phosphorylate ATF2 and ATF7 first on Thr71/Thr53 and next on Thr69/Thr51 residues respectively, resulting in transcriptional activation. Here, we identify and characterize a cytoplasmic alternatively spliced isoform of ATF7. This variant, named ATF7-4, inhibits both ATF2 and ATF7 transcriptional activities by impairing the first phosphorylation event on Thr71/Thr53 residues. ATF7-4 indeed sequesters the Thr53-phosphorylating kinase in the cytoplasm. Upon stimulus-induced phosphorylation, ATF7-4 is poly-ubiquitinated and degraded, enabling the release of the kinase and ATF7/ATF2 activation. Our data therefore conclusively establish that ATF7-4 is an important cytoplasmic negative regulator of ATF7 and ATF2 transcription factors.

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Turtle, Pawel Twardowski, Makoto Uchiyama, Roman Ullrich, Alberto Uribe, Asad Usman, Luis Val-Flores, Stijn Van de Velde, Marcel Van den Berge, Machteld Van der Feltz, Nicky Van der Vekens, Peter Van der Voort, Sylvie Van der Werf, Marlice Van Dyk, Laura Van Gulik, Jarne Van Hattem, Steven Van Lelyveld, Carolien Van Netten, Noemie Vanel, Henk Vanoverschelde, Charline Vauchy, Aurelie Veislinger, Jorge Velazco, Sara Ventura, Annelies Verbon, Cesar Vieira, Joy Ann Villanueva, Judit Villar, Pierre-Marc Villeneuve, Andrea Villoldo, Nguyen Van Vinh Chau, Benoit Visseaux, Hannah Visser, Aapeli Vuorinen, Fanny Vuotto, Chih-Hsien Wang, Jia Wei, Katharina Weil, Sanne Wesselius, Murray Wham, Bryan Whelan, Nicole White, Aurelie Wiedemann, Keith Wille, Evert-Jan Wils, Ioannis Xynogalas, Jacky Y. Suen, Sophie Yacoub, Masaki Yamazaki, Yazdan Yazdanpanah, Cecile Yelnik, Stephanie Yerkovich, Toshiki Yokoyama, Hodane Yonis, Paul Young, Saptadi Yuliarto, Marion Zabbe, Kai Zacharowski, Maram Zahran, Maria Zambon, Alberto Zanella, Konrad Zawadka, Hiba Zayyad, Alexander Zoufaly, David Zucman

INFECTION (2021)

Article Pharmacology & Pharmacy

Treatments for COVID-19: Lessons from 2020 and new therapeutic options

Fanny Salasc, Thomas Lahlali, Emilie Laurent, Manuel Rosa-Calatrava, Andres Pizzorno

Summary: This review examines the main drug repurposing strategies and achievements made during the first 18 months of the COVID-19 pandemic, and discusses potential antivirals, immunomodulators, and drug combinations for future treatment.

CURRENT OPINION IN PHARMACOLOGY (2022)

Article Medicine, Research & Experimental

Molnupiravir combined with different repurposed drugs further inhibits SARS-CoV-2 infection in human nasal epithelium in vitro

Hulda R. Jonsdottir, Denise Siegrist, Thomas Julien, Blandine Padey, Mendy Bouveret, Olivier Terrier, Andres Pizzorno, Song Huang, Kirandeep Samby, Timothy N. C. Wells, Bernadett Boda, Manuel Rosa-Calatrava, Olivier B. Engler, Samuel Constant

Summary: The SARS-CoV-2 virus has caused a global pandemic with significant economic and societal impact. While vaccines are available, there are disparities in access worldwide. Development of effective antiviral treatments is crucial due to the emergence of new variants and short immunity duration. Researchers evaluated the antiviral activity of single compounds and combinations using a standardized in vitro model. They found that selected drug combinations containing molnupiravir showed enhanced antiviral activity compared to single compound treatments, suggesting their potential as treatment strategies for COVID-19.

BIOMEDICINE & PHARMACOTHERAPY (2022)

Article Immunology

Potent human broadly SARS-CoV-2-neutralizing IgA and IgG antibodies effective against Omicron BA.1 and BA.2

Cyril Planchais, Ignacio Fernandez, Timothee Bruel, Guilherme Dias de Melo, Matthieu Prot, Maxime Beretta, Pablo Guardado-Calvo, Jeremy Dufloo, Luis M. Molinos-Albert, Marija Backovic, Jeanne Chiaravalli, Emilie Giraud, Benjamin Vesin, Laurine Conquet, Ludivine Grzelak, Delphine Planas, Isabelle Staropoli, Florence Guivel-Benhassine, Thierry Hieu, Mikael Boulle, Minerva Cervantes-Gonzalez, Marie-Noelle Ungeheuer, Pierre Charneau, Sylvie van Der Werf, Fabrice Agou, Jordan D. Dimitrov, Etienne Simon-Loriere, Herve Bourhy, Xavier Montagutelli, Felix A. Rey, Olivier Schwartz, Hugo Mouquet

Summary: This study reveals the contribution of memory B cells and antibodies targeting the SARS-CoV-2 spike protein to long-term immune protection against severe COVID-19. It also identifies potent IgA antibodies that can neutralize the virus, highlighting their potential for COVID-19 prevention and treatment.

JOURNAL OF EXPERIMENTAL MEDICINE (2022)

Article Chemistry, Physical

Antiviral Activity of Active Materials: Standard and Finger-Pad-Based Innovative Experimental Approaches

Lea Szpiro, Clara Bourgeay, Alexandre Loic Hoareau, Thomas Julien, Camille Menard, Yana Marie, Manuel Rosa-Calatrava, Vincent Moules

Summary: Environmental surfaces, especially high-touch surfaces, pose a high risk of becoming carriers of viruses and transmitting them to other individuals through direct contact. Consequently, there has been a growing interest in developing self-decontaminating materials to prevent viral transmission. This study compared the antiviral activities of three different experimental procedures on a reference surface and three active materials, highlighting the need for standardized testing conditions. Furthermore, an innovative approach based on finger-pad transfer was developed to evaluate the antiviral activity of high-touch surfaces under conditions resembling real-life exposure.

MATERIALS (2023)

Article Cell Biology

The Prodigious Potential of mRNA Electrotransfer as a Substitute to Conventional DNA-Based Transient Transfection

Theo Juncker, Bruno Chatton, Mariel Donzeau

Summary: Transient transfection of foreign DNA is widely used for gene function and product study but its efficiency depends on various factors. mRNA electroporation has advantages over conventional DNA-based systems in terms of high transfection efficiency and the ability to monitor protein expression level. By modulating the amount of mRNA used, cell imaging can be successfully conducted without the need to remove excess unbound proteins. Thus, mRNA electrotransfer could replace conventional DNA-based transient expression system easily.
Article Chemistry, Physical

Bioactivated and PEG-Protected Circa 2 nm Gold Nanoparticles for in Cell Labelling and Cryo-Electron Microscopy

Nadja Groysbeck, Victor Hanss, Mariel Donzeau, Jean-Marc Strub, Sarah Cianferani, Daniele Spehner, Mounib Bahri, Ovidiu Ersen, Mikhael Eltsov, Patrick Schultz, Guy Zuber

Summary: Advances in cryo-electron microscopy have allowed for near-native imaging of protein assemblies within mammalian cells. Gold nanoparticles have been synthesized and functionalized to bind to specific intracellular targets and be detected in vitreous sections. Cryo-EM of vitreous cell sections demonstrates the presence of these biofunctionalized gold nanoparticles in the nucleus, making them powerful labeling tools for cellular cryo-EM.

SMALL METHODS (2023)

Article Biochemistry & Molecular Biology

Modular Site-Specific Conjugation of Nanobodies Using Two Co-Associating Tags

Eric Moeglin, Lina Barret, Bruno Chatton, Mariel Donzeau

Summary: This study describes a method for site-specific labeling of nanobodies using two co-assembling peptide tags, E3 and K3. The method provides a simple and robust approach for associating VHH and fluorescent probes, and demonstrates the potential application of these molecular probes in cell immuno-staining.

INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES (2022)

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