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Itani, D.

Publications and source records attributed to Itani, D..

2 recordsLinked to original sources

PIAS1 loss and INHBA gain define a TGFβ-driven EMT state in OSCC progression

Oral squamous cell carcinoma (OSCC), a highly aggressive subtype of head and neck cancer, remains a major clinical challenge with limited therapeutic options and poor survival outcomes. The Protein Inhibitor of Activated STAT1 (PIAS1), a SUMO E3 ligase involved in transcriptional regulation, DNA repair, and epithelial-mesenchymal transition (EMT), exhibits cancer type-specific roles, but its function in OSCC has not been well characterized. Here, we investigated the molecular and functional role of PIAS1 in OSCC progression and prognosis. All patient cohorts analysed here comprise HPV-negative disease. Analysis across multiple cohorts revealed that PIAS1 mRNA expression is significantly lower in tumor tissues than in normal oral cavity squamous epithelium, including in a cohort of 60 patient-matched tumor and normal pairs. Within the tumor compartment, protein abundance of PIAS1 correlated positively with patient survival. Functional assays using OSCC cell lines demonstrated that PIAS1 acts in a SUMO E3-dependent manner to suppress TGF{beta}-induced migration and invasion. Transcriptomic profiling of PIAS1-depleted cells revealed alterations in expression of genes with relevance in TGF{beta} signaling and pro-invasive cellular responses. Further analyses showed that 46 of these differentially altered hits intersected with The Cancer Genome Atlas (TCGA)-OSCC datasets, where four of these genes, including INHBA, associated with cell stemness-pathway. Spatial analysis of the mRNA abundance of INHBA within OSCC-derived surgical specimens showed increased abundance at the invasive front, and positively associated with aggressive tumor phenotypes, poor patients' outcomes, and resistance to immunotherapy. Single-cell RNA-seq analyses of INHBA revealed increased levels within tumor cells and cancer-associated fibroblasts (CAFs), suggesting potential tumor-intrinsic and extrinsic (tumor microenvironment) sources and hence actions. Collectively, our findings establish PIAS1 as a tumor suppressor in OSCC that restrains TGF{beta}-driven aggressive behaviour. Furthermore, we identify INHBA as a potential therapeutic target, among other genes characterized by spatially restricted, invasive tumor phenotypes.

cancer biology↗

Whole Genome Sequencing Analysis of a Recent Multi-Drug Resistant Shigella sonnei Outbreak Among Tunisian Children

BackgroundShigella sonnei, a leading cause of shigellosis, is a global health concern, particularly affecting children under five. The emergence of multidrug-resistant (MDR) strains, including resistance to key antibiotics like ciprofloxacin and third-generation cephalosporins, exacerbates treatment challenges. This study investigates the genetic and antimicrobial resistance profiles of S. sonnei isolates from Tunisia, focusing on an outbreak of extended-spectrum beta-lactamase (ESBL)-producing strains. MethodsWe analysed nine S. sonnei isolates collected between September 2022 and January 2023 from Tunisian hospitals, using whole genome sequencing (WGS). Standard bacterial identification and serotyping methods were employed alongside antimicrobial susceptibility testing. We examined the genetic relatedness of the isolates, identified resistance genes, and characterised virulence factors. ResultsAll the isolates were confirmed as S. sonnei H6, biotype a, and belonged to lineage 3, clade 6 and sub-lineage 3. All harboured blaCTX-M-15, conferring resistance to third-generation cephalosporins. These were chromosomally integrated, suggesting stable resistance. Five isolates exhibited fluoroquinolone resistance associated with the qnrS1 gene, and all isolates had a single quinolone resistance-determining region mutation (GyrA-D87Y). Additionally, the plasmid-borne mphA gene, conferring resistance to macrolides, was prevalent. Single-linkage hierarchical clustering analysis indicated close genetic relationships with S. sonnei strains from Europe, particularly France and the UK (0 to 31 core genome MLST allele differences), indicating recent international dissemination. ConclusionThis study provides the first comprehensive molecular characterisation of MDR S. sonnei in Tunisia, highlighting a significant public health threat. The findings underscore the importance of continuous genomic surveillance to track the spread of resistant strains and inform public health interventions.

genomics↗