This review summarizes our current understanding of translation in prokaryotes, focusing on the mechanistic and structural aspects of each phase of translation: initiation, elongation, termination, and ribosome recycling. The assembly of the initiation complex provides multiple checkpoints for messenger RNA (mRNA) and start-site selection. Correct codon–anticodon interaction during the decoding phase of elongation results in major conformational changes of the small ribosomal subunit and shapes the reaction pathway of guanosine triphosphate (GTP) hydrolysis. The ribosome orchestrates proton transfer during peptide bond formation, but requires the help of elongation factor P (EF-P) when two or more consecutive Pro residues are to be incorpor...
Ribosomes translate messenger RNA (mRNA) into protein in all living cells. The faultless production ...
The ribosome is the 'universal ribozyme' that is responsible for the final step of decoding genetic ...
International audienceSelection of correct start codons on mRNAs is a key step required for faithful...
Ribosomes are supramolecular ribonucleoprotein particles that synthesize proteins in all cells. Prot...
Protein biosynthesis occurs on large macromolecular ribo-nucleoprotein complexes, the ribosomes, in ...
International audienceTranslation initiation is the rate-limiting and most complexly regulated step ...
Translation is the process by which proteins are synthesized from the instructions in the genetic co...
Understanding protein synthesis in bacteria and humans is important for understanding the origin of ...
Translation of genetic information encoded in messenger RNAs into polypeptide sequences is carried o...
The accurate transfer of information from a nucleotide-based code to a protein-based one is at the h...
Protein biosynthesis or translation is a basal process in the cells of all organisms, which is perfo...
The development of Ribosome Profiling (RiboSeq) has revolutionized functional genomics. RiboSeq is b...
Eukaryotic translation initiation requires coordinated assembly of a remarkable array of initiation ...
Ribosomes are universally conserved macromolecular machines found within all living cells that catal...
Protein synthesis, one of nature's most fundamental processes within all living cells, is catalyzed ...
Ribosomes translate messenger RNA (mRNA) into protein in all living cells. The faultless production ...
The ribosome is the 'universal ribozyme' that is responsible for the final step of decoding genetic ...
International audienceSelection of correct start codons on mRNAs is a key step required for faithful...
Ribosomes are supramolecular ribonucleoprotein particles that synthesize proteins in all cells. Prot...
Protein biosynthesis occurs on large macromolecular ribo-nucleoprotein complexes, the ribosomes, in ...
International audienceTranslation initiation is the rate-limiting and most complexly regulated step ...
Translation is the process by which proteins are synthesized from the instructions in the genetic co...
Understanding protein synthesis in bacteria and humans is important for understanding the origin of ...
Translation of genetic information encoded in messenger RNAs into polypeptide sequences is carried o...
The accurate transfer of information from a nucleotide-based code to a protein-based one is at the h...
Protein biosynthesis or translation is a basal process in the cells of all organisms, which is perfo...
The development of Ribosome Profiling (RiboSeq) has revolutionized functional genomics. RiboSeq is b...
Eukaryotic translation initiation requires coordinated assembly of a remarkable array of initiation ...
Ribosomes are universally conserved macromolecular machines found within all living cells that catal...
Protein synthesis, one of nature's most fundamental processes within all living cells, is catalyzed ...
Ribosomes translate messenger RNA (mRNA) into protein in all living cells. The faultless production ...
The ribosome is the 'universal ribozyme' that is responsible for the final step of decoding genetic ...
International audienceSelection of correct start codons on mRNAs is a key step required for faithful...