
Interview with Luca Lignitto: a discovery that could open up new avenues in the fight against lung cancer
1 July 2026
MemProt team at CRCM is joining the new European consortium for Spatial and Single-Cell Proteomics
16 September 2026Mission: The project consists in analysing and dissecting the role of hyperglycosylation ofspecific surface proteins in pancreatic tumor growth and their role in regulating the immune system.
Activities: The selected candidate will work on a specific cell surface receptor regulated by glycosylation. The candidate will perform experiments in vitro and in vivo, using high-throughput microscopy, confocal microscopy, protein biochemistry and mass spectrometry, with cutting-edge glycoproteomics. The postdoc will oversee master students. The postdoc will be able to leverage on large glycoproteomic datasets already acquired and multiple cell lines already generated.
Expected skills: PhD in life sciences. Experience in cell and cancer biology and murine models of cancer. Good mastery of bioinformatic tools. Experience in multi-omic data analysis, mass spec desired. Good communication skills, good command of English, ability to work independently.
Career opportunity: Opportunity to develop skills in an under-studied field and obtain interesting publications, leveraging on significant preliminary results.
Work environment: The postdoc will work within the Glynthera team, a world leader in the study of the GALA pathway and O-glycosylation role in solid tumors. The lab is focused on pancreatic and liver cancers and dedicated to the understanding of how changes in glycosylation patterns of surface and secreted proteins drive tumor growth and survival. Glynthera is part of the CRCM, an international cancer center affiliated to CRNS, INSERM, University Aix-Marseille and the Paoli-Calmettes Cancer Institute in the South-East of France. The CRCM combines access to clinicians and patients’ samples, state-of-the art technological platforms and an international pool of top scientists.
Tran LS, Chia J, Le Guezennec X, Tham KM, Nguyen AT, Sandrin V, Chen WC, Leng TT, Sechachalam S, Leong KP, Bard FA. ER O-glycosylation in synovial fibroblasts drives cartilage degradation. Nat Commun. 2025 Mar 14;16(1):2535. PMCID: PMC11909126
Martinez ML, Nan K, Bao Z, Bacchetti R, Yuan S, Tyler J, Guezennec XL, Bard FA, Rainero E. Novel kinase regulators of extracellular matrix internalisation identified by high-content screening modulate invasive carcinoma cell migration. PLoS Biol. 2024 Dec;22(12):e3002930. PMCID: PMC11637276
Ros M, Nguyen AT, Chia J, Le Tran S, Le Guezennec X, McDowall R, Vakhrushev S, Clausen H, Humphries MJ, Saltel F, Bard FA. ER-resident oxidoreductases are glycosylated and trafficked to the cell surface to promote matrix degradation by tumour cells. Nat Cell Biol. 2020 Nov;22(11):1371–1381. PMID: 33077910
Candidates should send before October 1 st , 2026:
- A curriculum vitae
- A concise presentation of the current research
- The name and email address of three referees
Applications should be sent to Frédéric Bard.





