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Yann Verdier

Explore the profile of Yann Verdier including associated specialties, affiliations and a list of published articles. Areas
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Articles 23
Citations 601
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Recent Articles
1.
Bertrand L, Nelde A, Ramirez B, Hatin I, Arbes H, Francois P, et al.
Nat Commun . 2025 Mar; 16(1):2243. PMID: 40050281
No abstract available.
2.
Bertrand L, Nelde A, Ramirez B, Hatin I, Arbes H, Francois P, et al.
Nat Commun . 2025 Feb; 16(1):1707. PMID: 39966340
The development of ribosomal profiling (Riboseq) revealed the immense coding capacity of human and viral genomes. Here, we used Riboseq to delineate the translatome of HIV-1 in infected CD4 T...
3.
Silva E, de Faria I, Ferreira A, Jiran T, Estevez-Castro C, Armache J, et al.
PLoS Pathog . 2025 Feb; 21(2):e1012184. PMID: 39899642
RNA interference (RNAi) mediated by the small interfering RNA (siRNA) pathway is a major antiviral mechanism in insects. This pathway is triggered when double-stranded RNA (dsRNA) produced during virus replication...
4.
Ravi Kumar R, Haddad I, Ndiaye M, Marbouty M, Vinh J, Verdier Y
Lab Chip . 2025 Jan; 25(4):590-599. PMID: 39820672
Combining different "omics" approaches, such as genomics and proteomics, is necessary to generate a detailed and complete insight into microbiome comprehension. Proper sample collection and processing and accurate analytical methods...
5.
Vecchio F, Carre A, Korenkov D, Zhou Z, Apaolaza P, Tuomela S, et al.
Sci Adv . 2024 Mar; 10(10):eadl1122. PMID: 38446892
Coxsackievirus B (CVB) infection of pancreatic β cells is associated with β cell autoimmunity and type 1 diabetes. We investigated how CVB affects human β cells and anti-CVB T cell...
6.
Ravi Kumar R, Ndiaye M, Haddad I, Vinh J, Verdier Y
J Proteome Res . 2024 Feb; 23(3):869-880. PMID: 38353246
The metaproteomic approach is an attractive way to describe a microbiome at the functional level, allowing the identification and quantification of proteins across a broad dynamic range as well as...
7.
Vecchio F, Carre A, Korenkov D, Zhou Z, Apaolaza P, Tuomela S, et al.
bioRxiv . 2023 Sep; PMID: 37662376
Coxsackievirus B (CVB) infection of pancreatic β cells is associated with β-cell autoimmunity. We investigated how CVB impacts human β cells and anti-CVB T-cell responses. β cells were efficiently infected...
8.
Azoury M, Samassa F, Buitinga M, Nigi L, Brusco N, Callebaut A, et al.
Diabetes . 2021 Sep; 70(12):2879-2891. PMID: 34561224
In type 1 diabetes, autoimmune β-cell destruction may be favored by neoantigens harboring posttranslational modifications (PTMs) such as citrullination. We studied the recognition of native and citrullinated glucose-regulated protein (GRP)78...
9.
Azoury M, Tarayrah M, Afonso G, Pais A, Colli M, Maillard C, et al.
Diabetes . 2020 Sep; 69(12):2678-2690. PMID: 32928873
The antigenic peptides processed by β-cells and presented through surface HLA class I molecules are poorly characterized. Each HLA variant (e.g., the most common being HLA-A2 and HLA-A3) carries some...
10.
Gonzalez-Duque S, Azoury M, Colli M, Afonso G, Turatsinze J, Nigi L, et al.
Cell Metab . 2018 Aug; 28(6):946-960.e6. PMID: 30078552
Although CD8 T-cell-mediated autoimmune β cell destruction occurs in type 1 diabetes (T1D), the target epitopes processed and presented by β cells are unknown. To identify them, we combined peptidomics...