Sandbox Lingyu
From Proteopedia
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== metallo-β-lactamases == | == metallo-β-lactamases == | ||
- | <StructureSection load=' | + | <StructureSection load='2qpn' size='350' side='right' caption='Structure of KpBlac A Ges-1 (PDB entry [[2qpn]])' scene=''> |
β-Lactamases are a large structurally heterogeneous familiy of bacterial enzymes catalyzing the cleavage of β-lactam antibiotics that are used as the predominant therapeutics in the treatment of bacterial infections. As β-lactamases appear to be one of the largest problems in human and veterinary infectiological medicine within the next decades and until now no strong pharmaceuticals are known to overcome the β-lactamase mediated bacterial resistances, a great effort of research is required to provide armed weapons against bacterial infections in the future. Therefor our group is working in the area of structure-function research, to get deep insights into structural and kinetical aspects of β-lactamases, which allow the development of new inhibitors. This includes x-ray crystallographic structure solutions and molecular dynmaic calculations, biophysical characterization of enzyme-ligand-complexes as well as the kinetical characterization of beta-lactamases, antibiotics and inhibitors. The following short descriptions give an insight into the current focus of research. | β-Lactamases are a large structurally heterogeneous familiy of bacterial enzymes catalyzing the cleavage of β-lactam antibiotics that are used as the predominant therapeutics in the treatment of bacterial infections. As β-lactamases appear to be one of the largest problems in human and veterinary infectiological medicine within the next decades and until now no strong pharmaceuticals are known to overcome the β-lactamase mediated bacterial resistances, a great effort of research is required to provide armed weapons against bacterial infections in the future. Therefor our group is working in the area of structure-function research, to get deep insights into structural and kinetical aspects of β-lactamases, which allow the development of new inhibitors. This includes x-ray crystallographic structure solutions and molecular dynmaic calculations, biophysical characterization of enzyme-ligand-complexes as well as the kinetical characterization of beta-lactamases, antibiotics and inhibitors. The following short descriptions give an insight into the current focus of research. |
Revision as of 08:18, 6 September 2012
metallo-β-lactamases
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