This profile is built from public research funding records (CIHR, NSERC and SSHRC) and PubMed. We have not imported them from a Université Laval directory, so their courses may be missing. Find their university profile.
Research
Latest papers
Regulation of Translation of ATF4 mRNA: A Focus on Translation Initiation Factors and RNA-Binding Proteins.
Cells · 2026 · senior author
The RNA Demethylases ALKBH5 and FTO Regulate the Translation of ATF4 mRNA in Sorafenib-Treated Hepatocarcinoma Cells.
Biomolecules · 2024 · senior author
Combined transcriptomics and proteomics unveil the impact of vitamin C in modulating specific protein abundance in the mouse liver.
Biological research · 2024
Latest funding
- $41,000
Role of the nuclear isoforms of the RNA-binding proteins named FXRP in DNA damage response
NSERC · 2024 · Principal investigator
- $150,000
Defining the role of stress granules (SG) in RNA stability and translation.
NSERC · 2020 · Principal investigator
- $100,000
Role of eIF4E-4GI translation initiation complexes in stress granules formation and downstream ATF4 expression: implication in cancer cells resistance to anti-cancer drugs-mediated cell death
CIHR · 2016 · Nominated PI
22 publications.
Regulation of Translation of ATF4 mRNA: A Focus on Translation Initiation Factors and RNA-Binding Proteins.
Adjibade P, Mazroui R
The RNA Demethylases ALKBH5 and FTO Regulate the Translation of ATF4 mRNA in Sorafenib-Treated Hepatocarcinoma Cells.
Adjibade P, Di-Marco S, Gallouzi IE, Mazroui R
Combined transcriptomics and proteomics unveil the impact of vitamin C in modulating specific protein abundance in the mouse liver.
Aumailley L, Bodein A, Adjibade P, Leclercq M, Bourassa S, Droit A, Mazroui R, Lebel M
The Identification of Nuclear FMRP Isoform Iso6 Partners.
Ledoux N, Lelong EIJ, Simard A, Hussein S, Adjibade P, Lambert JP, Mazroui R
Prostate cancer resistance leads to a global deregulation of translation factors and unconventional translation.
Lelong EIJ, Khelifi G, Adjibade P, Joncas FH, Grenier St-Sauveur V, Paquette V, Gris T, Zoubeidi A, Audet-Walsh E, Lambert JP, Toren P, Mazroui R, Hussein SMI
The RabGAP TBC-11 controls Argonaute localization for proper microRNA function in C. elegans.
Michaud P, Shah VN, Adjibade P, Houle F, Quévillon Huberdeau M, Rioux R, Lavoie-Ouellet C, Gu W, Mazroui R, Simard MJ
Treatment of cancer cells with Lapatinib negatively regulates general translation and induces stress granules formation.
Adjibade P, Simoneau B, Ledoux N, Gauthier WN, Nkurunziza M, Khandjian EW, Mazroui R
PRMT7 methylates eukaryotic translation initiation factor 2α and regulates its role in stress granule formation.
Haghandish N, Baldwin RM, Morettin A, Dawit HT, Adhikary H, Masson JY, Mazroui R, Trinkle-Mulcahy L, Côté J
DDX3 regulates endoplasmic reticulum stress-induced ATF4 expression.
Adjibade P, Grenier St-Sauveur V, Bergeman J, Huot ME, Khandjian EW, Mazroui R
Analysis of the translatome in solid tumors using polyribosome profiling/RNA-Seq.
Adjibade P, Grenier St-Sauveur V, Droit A, Khandjian EW, Toren P, Mazroui R
Role of the nuclear isoforms of the RNA-binding proteins named FXRP in DNA damage response
Principal investigators: Mazroui, Rachid
Keywords: rna-binding proteins; fmrp; dna bridges; dna damage; r-loops; rna-protein interaction; immunlocalisation; mass spectrometry; protein-protein interaction; cell culture
Defining the role of stress granules (SG) in RNA stability and translation.
Principal investigators: Mazroui, Rachid
Role of eIF4E-4GI translation initiation complexes in stress granules formation and downstream ATF4 expression: implication in cancer cells resistance to anti-cancer drugs-mediated cell death
Principal investigators: Mazroui, Rachid
Keywords: Anticancer Drugs; Atf4; Ddx3; Eif4e-Eif4g; Immunofluorescence; Polysomes Assays; Protein Synthesis Assays; Rna-Binding Proteins; Stress Granule; Xenografts
Role of FXR proteins in the cell stress response
Principal investigators: Mazroui, Rachid
Role of FXR proteins in the cellular response to stress
Principal investigators: Mazroui, Rachid
Role of eIF4E in stress granules formation and the associated resistance to chemotherapy
Principal investigators: Mazroui, Rachid
Keywords: Apoptosis; Eif4e; Immunofluorescence; Mrna Expression; Mtor Signaling; Rna Fish; Rna Interference; Stress Granules; Tumor Xenografts
Role of eIF4E in stress granules formation and the associated resistance to chemotherapy
Principal investigators: Mazroui, Rachid
Keywords: Anti-Cancer Proteasome Inhibitors; Apoptosis; Chemoresistance; Eif4e; Immunofluorescence; Mrna Expression; Rna Fish; Rna Interference; Stress Granules; Xenograft
Role of cytoplasmic stress granules in mediating cell resistance to apoptosis
Principal investigators: Mazroui, Rachid
Keywords: Apoptosis; Immunofluorescence; Mrna Expression; Rna Fish; Rna Interference; Stress Granules
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
Frequent collaborators
- Molecular Medicine
- Microbiologie et immunologie
- Surgery
- Urologic Sciences
- Cellular and Molecular Medicine
- Other
Co-authors at Université Laval, colored by department. Thicker lines mean more shared papers; select anyone to open their profile and their own map.
Jean-Philippe Lambert
Molecular Medicine
2 shared papers, latest 2023
Paul Toren
Surgery
2 shared papers, latest 2022
Marc-Étienne Huot
Faculty
2 shared papers, latest 2017
Arnaud Droit
Microbiologie et immunologie
2 shared papers, latest 2024
Amina Zoubeidi
Urologic Sciences
1 shared papers, latest 2022
Étienne Audet-Walsh
Molecular Medicine
1 shared papers, latest 2022
Michel Lebel
Faculty
1 shared papers, latest 2024
Laura Trinkle-Mulcahy
Cellular and Molecular Medicine
1 shared papers, latest 2019
Jean-Yves Masson
Faculty
1 shared papers, latest 2019
Patrick Laprise
Faculty
1 shared papers, latest 2013
Samer Hussein
Faculty
1 shared papers, latest 2023
A short, specific email works best. This draft uses one of their recent papers; replace the parts in brackets with your own details before sending.