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List of research teams

Endocytosis, Cytoskeleton, and Cell Migration

Thematic(s)
Cell Dynamics, Epigenetics, Tumor microenvironment
Attachment unit
U1279 - Tumor Cell Dynamics
Manager(s)
Guillaume Montagnac
Institutional connection

Gustave Roussy, Inserm, Paris-Saclay University

Summary

Objectives and Challenges

Guillaume Montagnac’s team studies the mechanisms by which cells regulate their interactions with their environment through adhesion, mechanics, and membrane trafficking. The challenge is to understand how cells coordinate endocytosis and adhesion to adapt to physical constraints—a key process in cell migration and diseases such as cancer. The team thus aims to advance our understanding of the coupling between the plasma membrane, the cytoskeleton, and mechanical forces.

Research Areas / Major Projects

The research focuses on (i) the regulation of cell adhesions (particularly integrins and focal adhesions) by endocytic trafficking, (ii) the study of cellular responses to mechanical stresses, and (iii) the analysis of new mechanisms of membrane-environment interaction. A central focus is the study of situations where endocytosis is mechanically impeded, leading to an accumulation of specific membrane structures. This work relies on quantitative approaches combining advanced imaging, cell biology, and control of the substrate’s physical properties.

Major Findings, Future Directions, and Impacts

The team proposed and demonstrated the concept of frustrated endocytosis, in which mechanical forces exerted by the substrate or the cell prevent the internalization of vesicles, transforming endocytic structures into mechanosensitive platforms. This discovery has revealed a direct link between endocytosis, adhesion, and force perception. The research has thus shown that these structures regulate the organization of cell-cell adhesions and the adaptation of cells to their environment. Future research aims to explore these mechanisms under physiological and pathological conditions, particularly in cancer. These findings have a major impact on fundamental cell biology and open up new avenues for targeting mechanocellular interactions.

Team members

  • Guillaume MONTAGNAC - Unit Director

    Research Director and Equivalents, Inserm

     

    ATHEA, Héloïse

    Postdoctoral Researcher, Inserm

     

    CHEIKH-HUSSIN Rasha

    Ph.D. Candidate, Gustave Roussy

     

    Noémie CORCOS

    Gustave Roussy

     

    Anthony Da Veiga

    Research Assistants and Technical Staff, Administrative Assistants and Staff, Gustave Roussy

     

    DAYOT Stéphane

    Postdoctoral researcher, Gustave Roussy

     

    Lucile Diot

    Ph.D. candidate, Inserm

     

    ELKHATIB, Nadia

    Researcher and equivalent positions, Inserm

     

    LECOURT Séverine

    Research Engineer or equivalent, Paris-Saclay University

     

    LY Nathalie

    Research Engineer or equivalent, Gustave Roussy

     

    Léa MAYEUR

    Ph.D. student, Paris-Saclay University

     

    MENARD Juliette

    Ph.D. student, Paris-Saclay University

     

    Jean-Philippe MORRETTON

    Research Engineer or equivalent, Gustave Roussy

     

    Barbara Pistilli

    Hospital Physician, Gustave Roussy

     

    ZHOU Yangyang

    Ph.D. student, Paris-Saclay University

Contacts

Location: Gustave Roussy Institute