Suliana ManleyFrom 2016 Associate professor, EPFL, Lausanne, Switzerland
2009-2016 Tenure-track assistant professor, EPFL, Lausanne, Switzerland
2006-2009 Post-Doctoral fellow, National Institutes of Health, Bethesda, MD, USA
2004-2006 Post-Doctoral fellow, Massachusetts Institute of Technology, Cambridge, MA, USA
1999-2004 PhD (Physics) Awarded 06/2004, Harvard University, Cambridge, MA, USA
1993-1997 Bachelors (Cum Laude) Physics & Mathematics, Rice University, Houston, TX, USA
Gerardo TurcattiSenior scientific level (R&D) with extensive experience in the management of multidisciplinary technological projects. Prof. Gerardo Turcatti, directs the academic technological platform, Biomolecular Screening Facility (BSF) at the EPFL he created in 2006. In the framework of the NCCR-Chemical Biology, he is project leader of the program ACCESS (An Academic Chemical Screening Platform for Switzerland). Previously he co-founded and acted as CTO of Manteia S.A., a Swiss-based company that developed high throughput DNA sequencing technologies currently owned by Illumina and used in the ‘Next Generation Sequencing’ instruments. Prior to this experience, Prof. Turcatti had a long multidisciplinary career in R&D divisions of Biotechnology and Pharmaceutical companies with extensive expertise in several Chemical Biology-related disciplines such as Drug Screening, Chemical Biology, Bio-analytical Chemistry, DNA and Protein Chemistry. Prof. Turcatti earned his Master in Chemical Engineering at the University of Geneva and his PhD in Chemistry and Biochemistry from the EPFL where he received the award for the best doctoral thesis of the year.
Bruno Emanuel Ferreira De Sousa CorreiaThroughout my PhD and postdoctoral studies I was trained in world-renowned laboratories and institutions in the United States of America (University of Washington and The Scripps Research Institute). Very early in my scientific career I found out my fascination about protein structure and function. My PhD studies evolved in the direction of immunogen design and vaccine engineering which sparked my interest in the many needs and opportunities in vaccinology and translational research. My efforts resulted in an enlightening piece of work where for the first time, computationally designed immunogens elicited potent neutralizing antibodies. During my postdoctoral studies I joined a chemical biology laboratory at the Scripps Research Institute. In this stage I developed novel chemoproteomics methods for the identification of protein-small molecule interaction sites in complex proteomes. In March 2015, I joined the École Polytechnique Fédérale de Lausanne (EPFL) – Switzerland as a tenure track assistant professor. The focus of my research group is to develop computational tools for protein design with particular emphasis in applying these strategies to immunoengineering (e.g. vaccine and cancer immunotherapy). The activities in my laboratory focus on computational design methods development and experimental characterization of the designed proteins. Our laboratory has been awarded with 2 prestigious research grants from the European Research Council. Lastly, I have been awarded the prize for best teacher of Life sciences in 2019.
John McKinneyProfessor John McKinney received his Ph.D. from The Rockefeller University (New York, NY) in 1994 for studies on cell cycle regulation in
Saccharomyces cerevisiae
in the laboratory of Fred Cross. From 1995 to 1998, he was a postdoctoral fellow in the laboratory of William Jacobs at the Albert Einstein College of Medicine (Bronx, NY), where he studied mechanisms of persistence in
Mycobacterium tuberculosis
. In 1999, he returned to Rockefeller University to establish his own laboratory as an Assistant (1999-2004) and then Associate (2004-2007) Professor. In July 2007, the lab relocated to the Global Health Institute in the School of Life Sciences at the École Polytechnique Fédérale de Lausanne (EPFL) in Switzerland, where McKinney is Professor and Head of the Laboratory of Microbiology and Microsystems (LMIC). Our research focuses on understanding the mechanistic basis of bacterial persistence in the context of host immunity and antimicrobial therapy, using
M. tuberculosis
as a "model" system.