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MTA-ELTE Protein
Model. Res. Group
and
Laboratory of Structural
Chemistry and Biology
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Department of Organic Chemistry
Institute of Chemistry
Faculty of Science
Eötvös Loránd University
Internal documents
Research areas
NMR-spectroscopy
Design and characterization of Trp-cage miniproteins
Characterization of intrinsically disordered proteins and their interactions
The S100 protein family
Structure, dynamics and ligand formation of K-Ras oncogenic mutants
Novel NMR tools
Membrane models and protein-membrane interactions
Structure, dynamics and activiy of small serine protease inhibitors
Interactions of Dynein Light Chain
Peptides and cyclopeptides
NMR of synthetic polymers
Generation and analysis of dynamic structural ensembles
The CCP1-CCP2 module pair of human C1r
31P-NMR
NMR of Carbohydrates
Crystallography
Towards the understanding of regulation of acylpeptide hydrolases
Calmodulin-ligand complexes
Radiation damage
Proteases of the complement system
Structures of foldamer building blocks and their precursors
Small molecule crystallography
DYNLL/LC8 interaction
Structure function relationships of dUTPases
Myosin regulation domain
Complex of crayfish trypsin and SGTI
Quantum chemistry
Study of enzymatic mechanisms
Conformational studies of α-amino acids oligo- and polypeptides
Chemical shift calculations of α-amino acids and peptides
Conformational studies of β-amino acids, oligo- and polypeptides
Study of amyloidogenic polypeptides
Ramachandran surface topology
NBOvis
Computational analysis
The PRIDE2 method & server
CCA+, the CD Spectrum Analyser System
Several aspects of genome evolution
Sugar amino acids as foldamer building blocks – Synthetic Organic Chemistry and Peptid Chemistry
Synthesis of β-Sugar amino acids (β-SAAs)
Making foldamers
Conformation analysis of foldamers
Structure of some sugar derivatives
Flow Peptide Chemistry
Cost Effective Flow Peptide Synthesis