For example, we developed an MS-based approach that enables to expose the diversity of subunit variants that comprise protein complexes. In addition, we have developed a generic approach to investigate ligand-driven protein complexes and define their allosteric mechanisms of function. We also contributed to the means by which the ion-mobility mass spectrometry approach is used for studying protein assemblies with unknown structures. Moreover, we recently devised a rapid mixing device for real-time MS analysis of protein complexes. In line with our past achievements, we not only aim to push the methodological and technological abilities of the native MS approach but also to combine it with complementary technologies for a comprehensive investigation of macromolecular assemblies.
Mass spectrometry for structural analysis
For example, we developed an MS-based approach that enables to expose the diversity of subunit variants that comprise protein complexes. In addition, we have developed a generic approach to investigate ligand-driven protein complexes and define their allosteric mechanisms of function. We also contributed to the means by which the ion-mobility mass spectrometry approach is used for studying protein assemblies with unknown structures. Moreover, we recently devised a rapid mixing device for real-time MS analysis of protein complexes. In line with our past achievements, we not only aim to push the methodological and technological abilities of the native MS approach but also to combine it with complementary technologies for a comprehensive investigation of macromolecular assemblies.