AbstractA new principle in constructing molecular complexes from the known high-resolution domain structures joining data from NMR and small-angle x-ray scattering (SAXS) measurements is described. Structure of calmodulin in complex with trifluoperazine was built from N- and C-terminal domains oriented based on residual dipolar couplings measured by NMR in a dilute liquid crystal, and the overall shape of the complex was derived from SAXS data. The residual dipolar coupling data serves to reduce angular degrees of freedom, and the small-angle scattering data serves to confine the translational degrees of freedom. The complex built by this method was found to be consistent with the known crystal structure. The study demonstrates how approxim...
Integrated experimental approaches play an increasingly important role in structural biology, taking...
International audienceThe study of complex and dynamic biomolecular assemblies is a key challenge in...
The information content in 1-D solution X-ray scattering profiles is generally restricted to low-res...
A new principle in constructing molecular complexes from the known high-resolution domain structures...
AbstractA new principle in constructing molecular complexes from the known high-resolution domain st...
A strategy for the accurate determination of protein solution structures starting from X-ray data an...
International audienceWe present the implementation of a target function based on Small Angle Scatte...
Structural analysis of multi-domain protein complexes is a key challenge in current biology and a pr...
A major challenge in structural biology is to determine the configuration of domains and proteins in...
Integrated experimental approaches play an increasingly important role in structural biology, taking...
International audienceMost proteins comprise several domains and/or participate in functional comple...
NMR spectroscopy is a key method for studying the structure and dynamics of (large) multidomain prot...
Structural biology provides essential information for elucidating molecular mechanisms that underlie...
Integrated experimental approaches play an increasingly important role in structural biology, taking...
International audienceThe study of complex and dynamic biomolecular assemblies is a key challenge in...
The information content in 1-D solution X-ray scattering profiles is generally restricted to low-res...
A new principle in constructing molecular complexes from the known high-resolution domain structures...
AbstractA new principle in constructing molecular complexes from the known high-resolution domain st...
A strategy for the accurate determination of protein solution structures starting from X-ray data an...
International audienceWe present the implementation of a target function based on Small Angle Scatte...
Structural analysis of multi-domain protein complexes is a key challenge in current biology and a pr...
A major challenge in structural biology is to determine the configuration of domains and proteins in...
Integrated experimental approaches play an increasingly important role in structural biology, taking...
International audienceMost proteins comprise several domains and/or participate in functional comple...
NMR spectroscopy is a key method for studying the structure and dynamics of (large) multidomain prot...
Structural biology provides essential information for elucidating molecular mechanisms that underlie...
Integrated experimental approaches play an increasingly important role in structural biology, taking...
International audienceThe study of complex and dynamic biomolecular assemblies is a key challenge in...
The information content in 1-D solution X-ray scattering profiles is generally restricted to low-res...