Molecular Mechanisms of Cell Entry of Enveloped Viruses
Facts
Description
Virus infections are a major cause of diseases and death among men and animals. The recent outbreak of SARS and the danger that an avian influenza virus may become pandemic, have clearly shown that members of any virus family can potentially turn into a pathogen. To combat virus infection and propagation, systematic and comprehensive studies both on viral components mediating virus-cell interactions, and on the cell biology behind virus entry are necessary. Our network, teaming academic and industrial groups, is aimed at undertaking an interdisciplinary effort to reveal the diversity of pathways and associated molecular mechanisms of cell entry of enveloped viruses. Research by experimental and theoretical approaches will be directed towards the identification of cellular receptors and of viral fusion proteins responsible for interaction with host cells. Among topics are folding, three-dimensional structure and conformational changes of viral fusion proteins as well as virus triggered signalling cascades in cells. Biophysical approaches will unravel the relationship between energetics of conformational changes of viral proteins and membrane bending and fusion. Together with industrial partners the project will identify potential targets for designed drug development, and will develop virus protein coated nanoparticles as new biotechnological and medical tools.
Project manager
- Person
Prof. Dr. rer. nat. Andreas Herrmann
- Molecular Biophysics
Partners
- Cooperation partnerGermany
Capsulution Pharma AG
- Cooperation partnerUniversityGermany
Free University of Berlin
- Cooperation partnerFrance
French National Center for Scientific Research
- Cooperation partnerFrance
Institut Pasteur
- Cooperation partnerSweden
Karolinska Institutet
- Cooperation partnerUniversitySwitzerland
Swiss Federal Institute of Technology in Zurich
- Cooperation partnerUniversityIsrael
Tel Aviv University
- Cooperation partnerUniversityNetherlands
Utrecht University