The remarkable progress of cryoelectron microscopy and crystallography in elucidating ribosomal structure and function continues. Most recently, two papers about complete 70S ribosomes from Thermus thermophilus at 2.8- and 3.7-angstrom resolution give us more details about the conformations of bound transfer RNA (tRNA) molecules; the bridges between subunits; the locations and roles of proteins, magnesium ions, and water molecules; and the dynamics of ribosomes. Very significant new insights have been gained, particularly for the tRNAs, which can only be studied in their entirety in full ribosomes
In this paper, we present a structure of the mammalian ribosome determined at not, vert, similar8.7 ...
Ribosomes translate messenger RNA (mRNA) into protein in all living cells. The faultless production ...
We have used single-particle reconstruction in cryo-electron microscopy to determine a structure of ...
We describe the crystal structure of the complete Thermus thermophilus 70S ribosome containing bound...
SummaryOur understanding of the mechanism of protein synthesis has undergone rapid progress in recen...
The key reaction of protein synthesis, peptidyl transfer, is catalysed in all living organisms by th...
Structures of the ribosomal large and small subunits have been solved to atomic resolution by X-ray ...
For almost 20 years crystallographers have sought to solve the structure of the ribosome, the larges...
This dissertation comprises projects focused broadly on cryo-electron microscopy (cryo-EM) methods a...
AbstractThe interaction between tRNA and the ribosome during translation, specifically during elonga...
The ribosome translates the genetic information of an mRNA molecule into a sequence of amino acids. ...
Using cryo-electron microscopy (cryo-EM), we determined the structure of the Escherichia coli 70S ri...
AbstractRecent X-ray crystal structures of the ribosome have revolutionized the field by providing a...
Cryo-electron microscopy of the ribosome in different binding states with mRNA and tRNA helps unrave...
AbstractBackground: The ribosome — essential for protein synthesis in all organisms — has been an ev...
In this paper, we present a structure of the mammalian ribosome determined at not, vert, similar8.7 ...
Ribosomes translate messenger RNA (mRNA) into protein in all living cells. The faultless production ...
We have used single-particle reconstruction in cryo-electron microscopy to determine a structure of ...
We describe the crystal structure of the complete Thermus thermophilus 70S ribosome containing bound...
SummaryOur understanding of the mechanism of protein synthesis has undergone rapid progress in recen...
The key reaction of protein synthesis, peptidyl transfer, is catalysed in all living organisms by th...
Structures of the ribosomal large and small subunits have been solved to atomic resolution by X-ray ...
For almost 20 years crystallographers have sought to solve the structure of the ribosome, the larges...
This dissertation comprises projects focused broadly on cryo-electron microscopy (cryo-EM) methods a...
AbstractThe interaction between tRNA and the ribosome during translation, specifically during elonga...
The ribosome translates the genetic information of an mRNA molecule into a sequence of amino acids. ...
Using cryo-electron microscopy (cryo-EM), we determined the structure of the Escherichia coli 70S ri...
AbstractRecent X-ray crystal structures of the ribosome have revolutionized the field by providing a...
Cryo-electron microscopy of the ribosome in different binding states with mRNA and tRNA helps unrave...
AbstractBackground: The ribosome — essential for protein synthesis in all organisms — has been an ev...
In this paper, we present a structure of the mammalian ribosome determined at not, vert, similar8.7 ...
Ribosomes translate messenger RNA (mRNA) into protein in all living cells. The faultless production ...
We have used single-particle reconstruction in cryo-electron microscopy to determine a structure of ...