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Elucidation of the molecular basis of BMP1 inhibition by its endogenous inhibitor and development of an anti-fibrotic molecule

ABG-134402 Sujet de Thèse
15/11/2025 Contrat doctoral
Tissue Biology and Therapeutic Engineering Laboratory - UMR 5305 CNRS/Université Lyon 1
- Auvergne-Rhône-Alpes - France
Elucidation of the molecular basis of BMP1 inhibition by its endogenous inhibitor and development of an anti-fibrotic molecule
  • Biochimie
  • Biologie
  • Santé, médecine humaine, vétérinaire
Biochemistry, protein engineering, structural biology, collagen, metalloproteases, skin scarring

Description du sujet

REMOD-HEALING is a research network of leading European and Latin American scientists from academia and industry, who want to tackle the burden of pathological wounds by exploiting therapeutic targets and biomarkers associated with extracellular matrix remodelling in cutaneous wounds. Through its research and training activities, the REMOD-HEALING project will contribute to scientific advancement and innovation in wound healing and regenerative medicine through a coordinated, interdisciplinary effort, ultimately leading to societal and economic benefits (more information here: remod-healing.eu).

The thesis project at LBTI is entitled "Elucidation of the molecular basis of BMP1 inhibition by its endogenous inhibitor and development of an anti-fibrotic molecule" and is described below.

Introduction

BMP1 (Bone Morphogenetic Protein 1) is an extracellular metalloprotease playing critical roles in extracellular matrix assembly and growth factor activation (1). It is involved in several physiological processes such as development, growth and skin wound healing. The dysregulation of its activity can however lead to pathological conditions, including wound healing disorders (e.g. chronic wounds and scarring). The lab of C. Moali is interested in understanding the mechanisms of regulation of BMP1 activity, at the molecular, cellular and tissue levels, with the goal to develop innovative therapeutic approaches to treat wound healing disorders.

Background

Previous work has shown that BMP1 regulation relies on two main proteins, PCPE1 and PCPE2, with both overlapping and divergent functions. One major difference between the PCPE proteins is that only PCPE2 can inhibit BMP1 proteolytic activity (2, 3). This finding was unexpected because PCPE1 and PCPE2 are very similar in terms of sequences and structures.

Objectives

The main objectives of the PhD project will be (i) to elucidate the molecular basis of BMP1 inhibition by PCPE2 and (ii) to use this knowledge to design an anti-fibrotic molecule capable of blocking collagen proteolytic maturation by BMP1.

Methodology

We will use systematic sequence swapping between PCPE1 and PCPE2 to identify the important residues for PCPE2 inhibitory function (molecular biology, activity assays, surface plasmon resonance). In parallel, we will try to solve the structure of the BMP1/PCPE2 complex by cryo-electron microscopy with the help of previously developed Nanobodies® to stabilize flexible regions. Finally, we will engineer an optimized inhibitor of BMP1 with high potency, stability and specificity and test its therapeutic potential in a wound-on-a-chip model of skin scarring.

Expected Results

This project will lead to the elucidation of a new mechanism of protease inhibition and to the development of a specific and potent inhibitor of BMP1 with anti-fibrotic properties.

 

Prise de fonction :

01/05/2026

Nature du financement

Contrat doctoral

Précisions sur le financement

Horizon Europe Marie Sklodowska-Curie Action Doctoral Network

Présentation établissement et labo d'accueil

Tissue Biology and Therapeutic Engineering Laboratory - UMR 5305 CNRS/Université Lyon 1

The thesis project described here will mainly take place at LBTI (Lyon, France), a laboratory with 120 staff members specializing in cutting-edge research in tissue biology and in the development of new therapeutic strategies in the field of tissue repair. In addition, the doctoral candidate will experience a 3-week placement at the University of Manchester (UK) in the lab of Clair Baldock for cryo-electron microscopy training and a 3-month placement at Mimetas (Leiden, The Netherlands) in the lab of Dorota Durek to test an engineered protease inhibitor in an in vitro model of skin scarring.

Participating in REMOD-HEALING offers doctoral candidates many unique opportunities, including:

 

• A 36 month project as Marie Skłodowska Curie trainee in one of the participating institutions with the objective of receiving a doctoral degree (PhD).

 

• State-of-the-art, exciting research in an international consortium with highly integrated research projects.

 

• Expert training in basic and applied research, along with a thorough understanding of the process involved in transitioning from basic to pre-clinical research.

 

• Research training periods in another consortium member's lab lasting from a few weeks up to three months, performed in a different EU country than the country where most of the project will take place.

 

• Training in both academic and industrial research environments.

• Salary according to EU guidelines for Marie Skłodowska Curie trainees, including mobility payments and family allowances where applicable.

Several summer/winter schools are also planned to strengthen doctoral students' knowledge in scientific fields, as well as in innovation and transferable skills (scientific communication, intellectual property, writing grant applications, etc.).

Intitulé du doctorat

Doctorat de Biologie

Pays d'obtention du doctorat

France

Etablissement délivrant le doctorat

UNIVERSITE CLAUDE-BERNARD-LYON 1

Ecole doctorale

École Doctorale interdisciplinaire sciences-santé (EDISS)

Profil du candidat

Applicants should not have resided or carried out their main activity (work, studies, etc.) in France for more than 12 months in the 36 months prior to their recruitment date. Applicants should not have already obtained a PhD degree.

 

Other requirements are:

  • Master degree in biochemistry or structural biology.
  • Practical experience in at least one of these techniques: molecular biology (PCR, cloning), mammalian cell culture, protein purification, methods to analyze proteinprotein interactions (ELISA, SPR, BLI, etc), crystallography, cryo-electron microscopy
  • Basic knowledge in extracellular matrix, skin biology and proteolysis
  • Excellent command of English (written and spoken)
  • Writing skills
  • Ability to work in a team and in a multicultural context
  • Highly autonomous, organized, rigorous and responsive
15/12/2025
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