AbstractA general method is presented that allows the separation of the rigid body motions from the nonrigid body motions of structural subunits when bound in a complex. The application presented considers the motions of the tRNAs: free, bound to the ribosome and to a synthase. We observe that both the rigid body and nonrigid body motions of the structural subunits are highly controlled by the large ribosomal assembly and are important for the functional motions of the assembly. For the intact ribosome, its major parts, the 30S and the 50S subunits, are found to have counterrotational motions in the first few slowest modes, which are consistent with the experimentally observed ratchet motion. The tRNAs are found to have on average ∼72–75% r...
AbstractTransfer RNA (tRNA) translocates inside the ribosome during translation. We studied the inte...
During translation elongation tRNAs efficiently move on the surface of the ribosome despite their la...
Major centers of motion in the rRNAs of Thermus thermophilus are identified by alignment of crystal ...
AbstractA general method is presented that allows the separation of the rigid body motions from the ...
Abstract: High-resolution structures at different stages, as well as biochemical, single molecule an...
High-resolution structures at different stages, as well as biochemical, single molecule and computat...
During protein synthesis, tRNAs move from the ribosome's aminoacyl to peptidyl to exit sites. Here w...
The ribosome is a large ribonucleoprotein complex that is responsible for the production of proteins...
The motions of large systems such as the ribosome are not fully accessible with conventional molecul...
The ribosome is a large ribonucleoprotein complex that is responsible for the production of proteins...
The ribosome is a large ribonucleoprotein complex that is responsible for the production of proteins...
During protein synthesis, tRNAs move from the ribosome's aminoacyl to peptidyl to exit sites. Here w...
The accurate expression of proteins requires the ribosome to efficiently undergo elaborate conformat...
Ribosomes are among the largest and most dynamic molecular motors. The structure and dynamics of tra...
SummaryThe structural understanding of eukaryotic translation lags behind that of translation on bac...
AbstractTransfer RNA (tRNA) translocates inside the ribosome during translation. We studied the inte...
During translation elongation tRNAs efficiently move on the surface of the ribosome despite their la...
Major centers of motion in the rRNAs of Thermus thermophilus are identified by alignment of crystal ...
AbstractA general method is presented that allows the separation of the rigid body motions from the ...
Abstract: High-resolution structures at different stages, as well as biochemical, single molecule an...
High-resolution structures at different stages, as well as biochemical, single molecule and computat...
During protein synthesis, tRNAs move from the ribosome's aminoacyl to peptidyl to exit sites. Here w...
The ribosome is a large ribonucleoprotein complex that is responsible for the production of proteins...
The motions of large systems such as the ribosome are not fully accessible with conventional molecul...
The ribosome is a large ribonucleoprotein complex that is responsible for the production of proteins...
The ribosome is a large ribonucleoprotein complex that is responsible for the production of proteins...
During protein synthesis, tRNAs move from the ribosome's aminoacyl to peptidyl to exit sites. Here w...
The accurate expression of proteins requires the ribosome to efficiently undergo elaborate conformat...
Ribosomes are among the largest and most dynamic molecular motors. The structure and dynamics of tra...
SummaryThe structural understanding of eukaryotic translation lags behind that of translation on bac...
AbstractTransfer RNA (tRNA) translocates inside the ribosome during translation. We studied the inte...
During translation elongation tRNAs efficiently move on the surface of the ribosome despite their la...
Major centers of motion in the rRNAs of Thermus thermophilus are identified by alignment of crystal ...