Ecole normale supérieure

Post-doc

Controlling the Trafficking of Key Regulators of Cancer Cell Invasion

접수중2026.06.05~2026.09.01

채용 정보

  • 접수 기간

    2026.06.05 00:00~2026.09.01 23:59

  • 접수 방법

    이메일지원더보기

  • 채용 구분

    신입/경력

  • 고용 형태

    계약직

  • 지원 자격

    박사

  • 모집 전공

    생명과학, 생물학, 동물・수의학, 축산학, 작물・원예학, 식품가공학, 농업학, 수산학, 산림・원예학, 농림수산환경생태학, 농림수산바이오시스템공학, 생명공학, 한약학, 약학더보기

  • 기관 유형

    대학교

  • 근무 지역

    해외(프랑스)더보기

  • 연봉 정보

Key words: biomolecular condensates, organelles, cancer cells

Our lab is looking for a post-doc/research engineer to develop and use novel tools for studying the role of intracellular organization and endomembrane trafficking in the early steps driving cancer cell invasionOur laboratoryis a highly-collaborative environment with state-of-the-art facilities and expertise in biophysics, cell biology and synthetic biology. The candidate will benefit from a multidisciplinary environment in the lab where biologists, chemists and biophysicists collaborate together. In particular, we will benefit from a collaboration with the team of Philippe Chavrier (Institut Curie) expert in cancer cell biology. Located in the heart of Paris, our laboratories benefit from an exceptionally rich academic environment, also provided by the proximity of internationally recognized research institutes (ENS, Curie Institute, College de France…).

Profile: The applicant should hold a PhD in Cell Biophysics or Cell Biology and show strong interest for interdisciplinary and collaborative works.

Scientific Project: During escape from a primary tumour, cancer cells remodel the extracellular matrix to create paths for invasion through invadopodia, specialized actin-rich structures with matrix-degrading activity (1). Invadopodia function depends on the precise spatial and temporal coordination of intracellular trafficking pathways, which deliver and regulate key matrix-remodeling factors. However, dissecting these dynamic processes requires tools that enable rapid, reversible, and localized control of biomolecule and organelle accessibility. To address this challenge, we are developing specific tools that allow the reversible trapping of organelles to selectively perturb specific cellular functions (2). We will apply these tools to reversibly control the trafficking and activity of key regulators of invadopodia-mediated matrix remodeling.

Expected start date: October-December 2026. Applications (curriculum vitae, statement of research interests, and contact information of 2 references) should be addressed to: [email protected]

 

References:

 

1. MT1-MMP directs force-producing proteolytic contacts that drive tumor cell invasion

R. Ferrari, G. Martin, O. Tagit, A. Guichard, A. Cambi, R. Voituriez, S. Vassilopoulos, P. Chavrier. Nat. Comm (2025).https://www.nature.com/articles/s41467-019-12930-y

 

2. Controlling lipid droplet dynamics via tether condensates 

Amari C, Simon D, Bellon T, Plamont MA, Thiam AR, and Gueroui Z 

Nat. Chem. Biol. (2025). https://www.nature.com/articles/s41589-025-01915-2

 

근무 예정지

대표Ecole normale supérieure(해외) : 45 Rue d'Ulm, 75005 Paris

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  • 대표전화

    +33 1 44 32 30 00

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관련 키워드

Biological sciences
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