Séminaire IBS : Multiple Roads to Fold : Modular Assembly of a Class A bêta-lactamase Monitored by High-Resolution Hydrogen-Deuterium Exchange

Localisation

Salle des séminaires IBS

Par Pr André Matagne (Laboratoire d’enzymologie et de repliement des protéines, Centre d’ingénierie des protéines, Département des Sciences de la Vie, Université de Liège, Belgique)

Class A β-lactamases, with their complex architecture and significant size (ca. 29 kDa), provide an excellent model for studying key features of protein folding. These enzymes exhibit two particularly interesting structural aspects : the formation of a β-domain in which the β-sheet is assembled from strands contributed by the N- and C-terminal regions of the polypeptide chain, and the distinctive packing of a large Ω-loop on the protein surface. While protein folding studies have traditionally focused on smaller, single-domain proteins with simple folding kinetics, β-lactamases enable the exploration of folding intermediates and alternative pathways in larger systems.

Using Bacillus licheniformis BS3 β-lactamase as a model, we have elucidated the folding process by combining quenched-flow hydrogen/deuterium exchange pulse-labelling with high-resolution methods including 2D-NMR and proteolytic fragmentation mass spectrometry. Together, these approaches track the formation and stabilization of secondary structure elements over time and reveal kinetically populated folding intermediates. BS3 β-lactamase is particularly well suited for such studies due to its high solubility and stability, ease of purification, measurable biological activity, and well-characterized 3D structure at 1.7 Å resolution. The availability of an assigned 1H-15N HSQC NMR spectrum further supports detailed kinetic and structural analyses, providing new insights into folding pathways and intermediate states in larger, multidomain enzymes.

Hôte : Dr Caroline Mas (IBS/Groupe Machines de Réplication Virale)