General information
Organisation
The French Alternative Energies and Atomic Energy Commission (CEA) is a key player in research, development and innovation in four main areas :
• defence and security,
• nuclear energy (fission and fusion),
• technological research for industry,
• fundamental research in the physical sciences and life sciences.
Drawing on its widely acknowledged expertise, and thanks to its 16000 technicians, engineers, researchers and staff, the CEA actively participates in collaborative projects with a large number of academic and industrial partners.
The CEA is established in ten centers spread throughout France
Reference
SL-DRF-25-0297
Direction
DRF
Thesis topic details
Category
Life Sciences
Thesis topics
Innovative pharmacological strategy to counter biohazard toxins
Contract
Thèse
Job description
THESIS OBJECTIVE. Develop PROTAC molecules for proteasome-mediated degradation of toxins internalized in host cells, and propose drug candidates for in vivo studies at the end of the thesis.
BACKGROUND AND CHALLENGES. Plant and bacterial toxins are among the most toxic natural substances, and are responsible for fatal diseases such as botulism and tetanus. Once the toxin is internalized in the target cells, immunotherapy is ineffective, and there are no curative treatments for these biomolecules. One way of achieving a major breakthrough in the development of medical countermeasures would be to target the toxin directly into the cytoplasm of host cells using PROTAC molecules. PROTACs are heterobifunctional degraders that specifically eliminate targeted proteins by hijacking the cell's ubiquitin-proteasome system. This recent therapeutic strategy represents an attractive technology for new drug discovery.
METHODOLOGY. To carry out this project, the thesis student will carry out in silico screening campaigns to identify ligands for a toxin and improve their affinity. Key validation experiments will require recombinant production of a toxin fragment, and will be carried out in E. coli. From the most promising optimized ligands, targeted libraries of PROTAC molecules directed against the toxin will be synthesized in collaboration with a team of chemists. The student will evaluate the ability of these molecules to interact with and eliminate the internalized toxin in cultured cells using different approaches, in order to propose drug candidates for in vivo studies at the end of the thesis.
University / doctoral school
Innovation Thérapeutique: du Fondamental à l’Appliqué (ITFA)
Paris-Saclay
Thesis topic location
Site
Saclay
Requester
Position start date
01/10/2025
Person to be contacted by the applicant
BARBIER Julien
julien.barbier@cea.fr
CEA
DRF/JOLIOT/DMTS/SIMOS/LBC
CEA Saclay
91191 Gif sur Yvette cedex
0169087577
Tutor / Responsible thesis director
BARBIER Julien
julien.barbier@cea.fr
CEA
DRF/JOLIOT/DMTS/SIMOS/LBC
CEA Saclay
91191 Gif sur Yvette cedex
0169087577
En savoir plus
https://joliot.cea.fr/drf/joliot/Pages/Entites_de_recherche/medicaments_technologies_sante/SIMoS/lbc/Toxines-transport-innovation-therapeutique.aspx