4.4 Article

Magnetic Resonance Access to Transiently Formed Protein Complexes

Journal

CHEMISTRYOPEN
Volume 3, Issue 3, Pages 115-123

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/open.201402008

Keywords

electron paramagnetic resonance; intrinsically; disordered proteins; nuclear magnetic resonance; proteinprotein interactions; transient complexes; structure characterization of biomolecules

Funding

  1. Alexander von Humboldt-Foundation (Germany)
  2. Austrian Science Foundation (FWF) [I844]
  3. Austrian Science Fund (FWF) [I 844] Funding Source: researchfish
  4. Austrian Science Fund (FWF) [I844] Funding Source: Austrian Science Fund (FWF)

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Protein-protein interactions are of utmost importance to an understanding of biological phenomena since non-covalent and therefore reversible couplings between basic proteins leads to the formation of complex regulatory and adaptive molecular systems. Such systems are capable of maintaining their integrity and respond to external stimuli, processes intimately related to living organisms. These interactions, however, span a wide range of dissociation constants, from sub-nanomolar affinities in tight complexes to high-micromolar or even millimolar affinities in weak, transiently formed protein complexes. Herein, we demonstrate how novel NMR and EPR techniques can be used for the characterization of weak proteinprotein (ligand) complexes. Applications to intrinsically disordered proteins and transiently formed protein complexes illustrate the potential of these novel techniques to study hitherto unobserved (and unobservable) higher-order structures of proteins.

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