9 pags, 5 figsProtein folding mechanisms have remained elusive mainly because of the transient nature of intermediates. Leech-derived tryptase inhibitor (LDTI) is a Kazal-type serine proteinase inhibitor that is emerging as an attractive model for folding studies. It comprises 46 amino acid residues with three disulfide bonds, with one located inside a small triple-stranded antiparallel a-sheet and with two involved in a cystine-stabilized α-helix, a motif that is widely distributed in bioactive peptides. Here, we analyzed the oxidative folding and reductive unfolding of LDTI by chromatographic and disulfide analyses of acidtrapped intermediates. It folds and unfolds, respectively, via sequential oxidation and reduction of the cysteine resi...
Almost all therapeutic proteins contain disulfide bonds to stabilize their native structure. Recombi...
The aim of this work was to elucidate the oxidative folding mechanism of the macrocyclic cystine kno...
In contrast to molecular chaperones that couple protein folding to ATP hydrolysis, protein disulfide...
SummaryThe III-A intermediate constitutes the major rate-determining step in the oxidative folding o...
AbstractBackground: Tryptase is a trypsin-like serine proteinase stored in the cytoplasmic granules ...
The correct balance between proteases and their natural protein inhibitors is of great importance in...
SummaryThe III-A intermediate constitutes the major rate-determining step in the oxidative folding o...
In contrast to molecular chaperones that couple protein folding to ATP hydrolysis, protein disulfide...
In contrast to molecular chaperones that couple protein folding to ATP hydrolysis, protein disulfide...
In contrast to molecular chaperones that couple protein folding to ATP hydrolysis, protein disulfide...
<div><p>In contrast to molecular chaperones that couple protein folding to ATP hydrolysis, protein d...
AbstractThe three-dimensional solution structure of the leech derived tryptase inhibitor form C (LDT...
AbstractThe three-dimensional solution structure of the leech derived tryptase inhibitor form C (LDT...
Leech carboxypeptidase inhibitor (LCI) is a 67-residue, tight-binding metallocarboxypeptidase inhibi...
Almost all therapeutic proteins contain disulfide bonds to stabilize their native structure. Recombi...
Almost all therapeutic proteins contain disulfide bonds to stabilize their native structure. Recombi...
The aim of this work was to elucidate the oxidative folding mechanism of the macrocyclic cystine kno...
In contrast to molecular chaperones that couple protein folding to ATP hydrolysis, protein disulfide...
SummaryThe III-A intermediate constitutes the major rate-determining step in the oxidative folding o...
AbstractBackground: Tryptase is a trypsin-like serine proteinase stored in the cytoplasmic granules ...
The correct balance between proteases and their natural protein inhibitors is of great importance in...
SummaryThe III-A intermediate constitutes the major rate-determining step in the oxidative folding o...
In contrast to molecular chaperones that couple protein folding to ATP hydrolysis, protein disulfide...
In contrast to molecular chaperones that couple protein folding to ATP hydrolysis, protein disulfide...
In contrast to molecular chaperones that couple protein folding to ATP hydrolysis, protein disulfide...
<div><p>In contrast to molecular chaperones that couple protein folding to ATP hydrolysis, protein d...
AbstractThe three-dimensional solution structure of the leech derived tryptase inhibitor form C (LDT...
AbstractThe three-dimensional solution structure of the leech derived tryptase inhibitor form C (LDT...
Leech carboxypeptidase inhibitor (LCI) is a 67-residue, tight-binding metallocarboxypeptidase inhibi...
Almost all therapeutic proteins contain disulfide bonds to stabilize their native structure. Recombi...
Almost all therapeutic proteins contain disulfide bonds to stabilize their native structure. Recombi...
The aim of this work was to elucidate the oxidative folding mechanism of the macrocyclic cystine kno...
In contrast to molecular chaperones that couple protein folding to ATP hydrolysis, protein disulfide...