Previous attempts to determine the solution structures of homodimeric 'leucine zippers' using nuclear magnetic resonance (NMR) spectroscopy have been impeded by the complete symmetry of these coiled-coil molecules, which makes it impossible a priori to distinguish between intra- and intermonomer dipolar connectivities. Consequently, a number of ad hoc approaches have been used in an attempt to derive tertiary solution structures of these molecules from the NMR data. In this paper we present a more rigorous approach for analysing the NMR spectra of symmetric coiled-coil proteins. This analysis is based on calculations of intra- and intermonomer interproton distances in the recently determined crystal structure of the GCN4 leucine zipper [O'S...
We report the complete structure determination of a 34 residue synthetic peptide with the amino acid...
The leucine zipper structure is adopted by one family of the coiled coil proteins. Leucine zippers h...
The coiled-coil is a very common protein structural motif, consisting of two or more alpha helices i...
Proton NMR studies have been performed on a 9.8-kDa synthetic fragment comprising the homodimeric le...
NMR studies of symmetric multimers are problematic due to the difficulty in distinguishing between i...
Leucine zippers constitute a widely observed structural motif which serves to promote both homo- and...
The backbone dynamics of the coiled-coil leucine zipper domain of c-Jun have been studied using prot...
'To whom correspondence should be addressed We report the complete structure determination of a...
Understanding the forces involved in protein folding is necessary for the development of reliable mo...
Proteins are complex macromolecules that play a critical role in all biological processes. Their abi...
The solution structure of an active synthetic peptide containing both the leucine zipper and the adj...
ABSTRACT: A method that employs a transfer matrix treatment combined with Monte Carlo sampling has b...
Identifying the interactions that exist in the leucine zipper DNA binding proteins are crucial for t...
Nuclear magnetic resonance (NMR) spectroscopy is a powerful method of determining three-dimensional ...
This thesis describes the use of nuclear magnetic resonance techniques to determine the structures o...
We report the complete structure determination of a 34 residue synthetic peptide with the amino acid...
The leucine zipper structure is adopted by one family of the coiled coil proteins. Leucine zippers h...
The coiled-coil is a very common protein structural motif, consisting of two or more alpha helices i...
Proton NMR studies have been performed on a 9.8-kDa synthetic fragment comprising the homodimeric le...
NMR studies of symmetric multimers are problematic due to the difficulty in distinguishing between i...
Leucine zippers constitute a widely observed structural motif which serves to promote both homo- and...
The backbone dynamics of the coiled-coil leucine zipper domain of c-Jun have been studied using prot...
'To whom correspondence should be addressed We report the complete structure determination of a...
Understanding the forces involved in protein folding is necessary for the development of reliable mo...
Proteins are complex macromolecules that play a critical role in all biological processes. Their abi...
The solution structure of an active synthetic peptide containing both the leucine zipper and the adj...
ABSTRACT: A method that employs a transfer matrix treatment combined with Monte Carlo sampling has b...
Identifying the interactions that exist in the leucine zipper DNA binding proteins are crucial for t...
Nuclear magnetic resonance (NMR) spectroscopy is a powerful method of determining three-dimensional ...
This thesis describes the use of nuclear magnetic resonance techniques to determine the structures o...
We report the complete structure determination of a 34 residue synthetic peptide with the amino acid...
The leucine zipper structure is adopted by one family of the coiled coil proteins. Leucine zippers h...
The coiled-coil is a very common protein structural motif, consisting of two or more alpha helices i...