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1.
EBioMedicine ; 92: 104634, 2023 Jun.
Article de Anglais | MEDLINE | ID: mdl-37257316

RÉSUMÉ

BACKGROUND: Pancreatic ductal adenocarcinoma (PDAC) has been widely studied at multiomics level. However, little is known about its specific ubiquitination, a major post-translational modification (PTM). As PTMs regulate the final function of any gene, we decided to establish the ubiquitination profiles of 60 PDAC. METHODS: We used specific proteomic tools to establish the ubiquitin dependent proteome (ubiquitinome) of frozen PDXs (Patients' derived xenographs). Then, we performed bioinformatics analysis to identify the possible associations of these ubiquitination profiles with tumour phenotype, patient survival and resistance to chemotherapies. Finally, we used proximity ligation assays (PLA) to detect and quantify the ubiquitination level of one identified marker. FINDINGS: We identified 38 ubiquitination site profiles correlating with the transcriptomic phenotype of tumours and four had notable prognostic capabilities. Seventeen ubiquitination profiles displayed potential theranostic marker for gemcitabine, seven for 5-FU, six for oxaliplatin and thirteen for irinotecan. Using PLA, we confirmed the use of one ubiquitination profile as a drug-response marker, directly on paraffin embedded tissues, supporting the possible application of these biomarkers in the clinical setting. INTERPRETATION: These findings bring new and important insights on the relationship between ubiquitination levels of proteins and different molecular and clinical features of PDAC patients. Markers identified in this study could have a potential application in clinical settings to help to predict response to chemotherapies thereby allowing the personalization of treatments. FUNDING: Fondation ARC (PJA 20181208270 and PGA 12021010002840_3562); INCa; Canceropôle PACA; DGOS; Amidex Foundation; Fondation de France; and INSERM.


Sujet(s)
Carcinome du canal pancréatique , Tumeurs du pancréas , Humains , Pronostic , Médecine de précision , Protéomique , Carcinome du canal pancréatique/diagnostic , Carcinome du canal pancréatique/traitement médicamenteux , Carcinome du canal pancréatique/génétique , Tumeurs du pancréas/diagnostic , Tumeurs du pancréas/traitement médicamenteux , Tumeurs du pancréas/génétique , Ubiquitination , Tumeurs du pancréas
2.
Trends Microbiol ; 26(8): 640-642, 2018 08.
Article de Anglais | MEDLINE | ID: mdl-29909044

RÉSUMÉ

Dengue virus (DENV) induces a proviral selective autophagy targeting lipid droplets, termed lipophagy, that stimulates lipid metabolism. Zhang et al. gained mechanistic insight into this process, demonstrating that DENV NS4A/B binds unmodified AUP1 and promotes its translocation from lipid droplets to autophagosomes to drive the induction of lipophagy.


Sujet(s)
Virus de la dengue , Dengue , Autophagie , Protéines de transport , Flavivirus , Humains , Protéines associées aux gouttelettes lipidiques , Gouttelettes lipidiques , Métabolisme lipidique , Protéines membranaires
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