The L1 protuberance of the 50S ribosomal subunit is implicated in the release/disposal of deacylated tRNA from the E site. The apparent mobility of this ribosomal region has thus far prevented an accurate determination of its three-dimensional structure within either the 50S subunit or the 70S ribosome. Here we report the crystal structure at 2.65 Å resolution of ribosomal protein L1 from Sulfolobus acidocaldarius in complex with a specific 55-nucleotide fragment of 23S rRNA from Thermus thermophilus. This structure fills a major gap in current models of the 50S ribosomal subunit. The conformations of L1 and of the rRNA fragment differ dramatically from those within the crystallographic model of the T. thermophilus 70S ribosome. Incorporati...
Abstract: Although during the past decade research has shown the functional importance of disorder i...
AbstractThe crystal structure of the mutant S179C of the ribosomal protein L1 from Thermus thermophi...
AbstractBackground: Detailed structural information on ribosomal proteins has increased our understa...
The RNA binding ability of ribosomal protein L1 is of profound interest since the protein has a dual...
The crystal structure of the 92-nucleotide L1-specific fragment of 23S rRNA from Haloarcula marismor...
We describe the crystal structure of the complete Thermus thermophilus 70S ribosome containing bound...
Background: L1 is an important primary rRNA-binding protein, as well as a translational repressor th...
Genetic information encoded in messenger RNA is translated into protein by the ribosome, which is a ...
AbstractWe describe the high resolution structure of the large ribosomal subunit from Deinococcus ra...
AbstractBackground: L1 is an important primary rRNA-binding protein, as well as a translational repr...
We present a detailed analysis of the protein structures in the 30 S ribosomal subunit from Thermus ...
SummaryOur understanding of the mechanism of protein synthesis has undergone rapid progress in recen...
AbstractBackground: The ribosomal protein L22 is one of five proteins necessary for the formation of...
The 30S ribosomal subunit binds messenger RNA and the anticodon stem-loop of transfer RNA during pro...
Although during the past decade research has shown the functional importance of disorder in proteins...
Abstract: Although during the past decade research has shown the functional importance of disorder i...
AbstractThe crystal structure of the mutant S179C of the ribosomal protein L1 from Thermus thermophi...
AbstractBackground: Detailed structural information on ribosomal proteins has increased our understa...
The RNA binding ability of ribosomal protein L1 is of profound interest since the protein has a dual...
The crystal structure of the 92-nucleotide L1-specific fragment of 23S rRNA from Haloarcula marismor...
We describe the crystal structure of the complete Thermus thermophilus 70S ribosome containing bound...
Background: L1 is an important primary rRNA-binding protein, as well as a translational repressor th...
Genetic information encoded in messenger RNA is translated into protein by the ribosome, which is a ...
AbstractWe describe the high resolution structure of the large ribosomal subunit from Deinococcus ra...
AbstractBackground: L1 is an important primary rRNA-binding protein, as well as a translational repr...
We present a detailed analysis of the protein structures in the 30 S ribosomal subunit from Thermus ...
SummaryOur understanding of the mechanism of protein synthesis has undergone rapid progress in recen...
AbstractBackground: The ribosomal protein L22 is one of five proteins necessary for the formation of...
The 30S ribosomal subunit binds messenger RNA and the anticodon stem-loop of transfer RNA during pro...
Although during the past decade research has shown the functional importance of disorder in proteins...
Abstract: Although during the past decade research has shown the functional importance of disorder i...
AbstractThe crystal structure of the mutant S179C of the ribosomal protein L1 from Thermus thermophi...
AbstractBackground: Detailed structural information on ribosomal proteins has increased our understa...