SummaryA prominent surface loop links the first two β strands of the lipoyl domain (E2plip) from the pyruvate dehydrogenase multienzyme complex of Escherichia coli. We show here that shortening this loop by two residues generates a protein that populates two structurally distinct stable conformers: an active, native-like monomer (HM) and a functionally compromised misfolded dimer (LM). Conversion of LM to HM was observed after exposure to temperatures above 50°C. Removal of two additional residues from the loop caused the protein to adopt exclusively the misfolded conformation. Detailed NMR structural studies of the misfolded dimer reveal that the N-terminal half of the domain was unfolded and dynamic, whereas the C-terminal halves of two m...
Detailed information about unfolded states is required to understand how proteins fold. Knowledge ab...
Domain swapping, the process in which a structural unit is exchanged between monomers to create a di...
Early events in folding can determine if a protein is going to fold, misfold, or aggregate. Understa...
SummaryA prominent surface loop links the first two β strands of the lipoyl domain (E2plip) from the...
The lipoyl domain of the dihydrolipoyl succinyltransferase (E2o) component of the 2OGDH (2-oxoglutar...
The lipoyl domains of the dihydrolipoyl acyltransferase (E2p, E2o) components of the pyruvate and 2-...
The conformation and topology of a protein changes when stabilizing forces are absent, but the mecha...
AbstractBackground: Thermodynamic and kinetic studies of the Protein L B1 domain (Ppl) suggest a fol...
Proteins fold through complex inter-residue interactions which are mutually supportive and cooperati...
AbstractTwo classes of protein whose structure is modified by small ligands are reviewed. Proteins o...
AbstractProtein-protein interactions govern a wide range of cellular processes. Molecular recognitio...
As the molecular biology and metabolic engineering fields move towards more thorough exploration and...
Although folded proteins are commonly depicted as simplistic combinations of β-strands and α-helices...
AbstractThree-dimensional domain swapping is the event by which a monomer exchanges part of its stru...
In this article we focus on presenting a broad range of examples illustrating low-energy transitions...
Detailed information about unfolded states is required to understand how proteins fold. Knowledge ab...
Domain swapping, the process in which a structural unit is exchanged between monomers to create a di...
Early events in folding can determine if a protein is going to fold, misfold, or aggregate. Understa...
SummaryA prominent surface loop links the first two β strands of the lipoyl domain (E2plip) from the...
The lipoyl domain of the dihydrolipoyl succinyltransferase (E2o) component of the 2OGDH (2-oxoglutar...
The lipoyl domains of the dihydrolipoyl acyltransferase (E2p, E2o) components of the pyruvate and 2-...
The conformation and topology of a protein changes when stabilizing forces are absent, but the mecha...
AbstractBackground: Thermodynamic and kinetic studies of the Protein L B1 domain (Ppl) suggest a fol...
Proteins fold through complex inter-residue interactions which are mutually supportive and cooperati...
AbstractTwo classes of protein whose structure is modified by small ligands are reviewed. Proteins o...
AbstractProtein-protein interactions govern a wide range of cellular processes. Molecular recognitio...
As the molecular biology and metabolic engineering fields move towards more thorough exploration and...
Although folded proteins are commonly depicted as simplistic combinations of β-strands and α-helices...
AbstractThree-dimensional domain swapping is the event by which a monomer exchanges part of its stru...
In this article we focus on presenting a broad range of examples illustrating low-energy transitions...
Detailed information about unfolded states is required to understand how proteins fold. Knowledge ab...
Domain swapping, the process in which a structural unit is exchanged between monomers to create a di...
Early events in folding can determine if a protein is going to fold, misfold, or aggregate. Understa...