We describe an NMR approach based on the measurement of residual dipolar couplings (RDCs) to probe the structural and motional properties of the dynamic regions of the ribosome. Alignment of intact 70S ribosomes in filamentous bacteriophage enabled measurement of RDCs in the mobile C-terminal domain (CTD) of the stalk protein bL12. A structural refinement of this domain using the observed RDCs did not show large changes relative to the isolated protein in the absence of the ribosome, and we also found that alignment of the CTD was almost independent of the presence of the core ribosome particle, indicating that the inter-domain linker has significant flexibility. The nature of this linker was subsequently probed in more detail using a param...
CONSPECTUS: Many multidomain proteins and ribonucleic acids consist of domains that autonomously fol...
<p>Biological macromolecules can rearrange interdomain orientations when binding to various partners...
Ribosomal protein L12 is a two-domain protein that forms dimers mediated by its N-terminal domains. ...
We describe an NMR approach based on the measurement of residual dipolar couplings (RDCs) to probe t...
We describe an NMR approach based on the measurement of residual dipolar couplings (RDCs) to probe t...
15N-(1)H NMR spectroscopy has been used to probe the dynamic properties of uniformly (15)N labeled E...
15N-1H NMR spectroscopy has been used to probe the dynamic properties of uniformly 15N labeled Esche...
15N-1H NMR spectroscopy has been used to probe the dynamic properties of uniformly 15N labeled Esche...
The ubiquitous ribosome is responsible for the synthesis of proteins, which generally require correc...
During translation, the ribosome and several of its constituent proteins undergo structural transiti...
A novel iterative procedure is described that allows both the orientation and dynamics of internucle...
The means by which a polypeptide chain acquires its unique 3-D structure is a fundamental question i...
NMR spectroscopy is a powerful tool to study the dynamic process of how proteins acquire their biolo...
AbstractNMR spectroscopy is a powerful tool for the investigation of protein folding and misfolding,...
Successful protein folding is central to all biological cellular processes with a large portion of t...
CONSPECTUS: Many multidomain proteins and ribonucleic acids consist of domains that autonomously fol...
<p>Biological macromolecules can rearrange interdomain orientations when binding to various partners...
Ribosomal protein L12 is a two-domain protein that forms dimers mediated by its N-terminal domains. ...
We describe an NMR approach based on the measurement of residual dipolar couplings (RDCs) to probe t...
We describe an NMR approach based on the measurement of residual dipolar couplings (RDCs) to probe t...
15N-(1)H NMR spectroscopy has been used to probe the dynamic properties of uniformly (15)N labeled E...
15N-1H NMR spectroscopy has been used to probe the dynamic properties of uniformly 15N labeled Esche...
15N-1H NMR spectroscopy has been used to probe the dynamic properties of uniformly 15N labeled Esche...
The ubiquitous ribosome is responsible for the synthesis of proteins, which generally require correc...
During translation, the ribosome and several of its constituent proteins undergo structural transiti...
A novel iterative procedure is described that allows both the orientation and dynamics of internucle...
The means by which a polypeptide chain acquires its unique 3-D structure is a fundamental question i...
NMR spectroscopy is a powerful tool to study the dynamic process of how proteins acquire their biolo...
AbstractNMR spectroscopy is a powerful tool for the investigation of protein folding and misfolding,...
Successful protein folding is central to all biological cellular processes with a large portion of t...
CONSPECTUS: Many multidomain proteins and ribonucleic acids consist of domains that autonomously fol...
<p>Biological macromolecules can rearrange interdomain orientations when binding to various partners...
Ribosomal protein L12 is a two-domain protein that forms dimers mediated by its N-terminal domains. ...