Structural studies suggest rearrangement of the RNA‐binding and catalytic domains of human mitochondrial PheRS (mtPheRS) is required for aminoacylation. Crosslinking the catalytic and RNA‐binding domains resulted in a “closed” form of mtPheRS that still catalyzed ATP‐dependent Phe activation, but was no longer able to transfer Phe to tRNA and complete the aminoacylation reaction. SAXS experiments indicated the presence of both the closed and open forms of mtPheRS in solution. Together, these results indicate that conformational flexibility of the two functional modules in mtPheRS is essential for its phenylalanylation activity. This is consistent with the evolution of the aminoacyl‐tRNA synthetases as modular enzymes consisting of separate ...
Sequence-specific interactions between aminoacyl-tRNA synthetases and their cognate tRNAs ensure bot...
The genetic code can be interpreted during translation as 21 amino acids and three termination signa...
An investigation of the role of tRNA in the catalysis of aminoacylation of Escherichia coli glutamin...
The role of tRNA as the adaptor in protein synthesis has held an enduring fascination for molecular ...
Monomethylamine methyltransferase of the archaeon Methanosarcina barkeri contains a rare amino acid,...
To ensure correct amino acids are incorporated during protein synthesis, aminoacyl-tRNA synthetases ...
It has previously been demonstrated that the unnatural amino acid p‐Cl‐phenylalanine can be attached...
Aminoacyl-tRNA synthetases (aaRSs) are the enzymes normally responsible for the attachment of amino ...
Regulation of translational quality control during adverse growth conditions is critical to maintain...
Aminoacyl-tRNA synthetases (aaRSs) are multidomain proteins that specifically attach amino acids to ...
Accurately aminoacylated tRNAs are an a priori requirement for translation of the genetic code. They...
Genome‐scale analyses have shown numerous functional duplications in the canonical translational mac...
Translation of the genetic code requires attachment of tRNAs to their cognate amino acids. Errors du...
Human mitochondrial tRNA (hmt-tRNA) mutations are associated with a variety of diseases including mi...
AbstractStructural studies suggest rearrangement of the RNA-binding and catalytic domains of human m...
Sequence-specific interactions between aminoacyl-tRNA synthetases and their cognate tRNAs ensure bot...
The genetic code can be interpreted during translation as 21 amino acids and three termination signa...
An investigation of the role of tRNA in the catalysis of aminoacylation of Escherichia coli glutamin...
The role of tRNA as the adaptor in protein synthesis has held an enduring fascination for molecular ...
Monomethylamine methyltransferase of the archaeon Methanosarcina barkeri contains a rare amino acid,...
To ensure correct amino acids are incorporated during protein synthesis, aminoacyl-tRNA synthetases ...
It has previously been demonstrated that the unnatural amino acid p‐Cl‐phenylalanine can be attached...
Aminoacyl-tRNA synthetases (aaRSs) are the enzymes normally responsible for the attachment of amino ...
Regulation of translational quality control during adverse growth conditions is critical to maintain...
Aminoacyl-tRNA synthetases (aaRSs) are multidomain proteins that specifically attach amino acids to ...
Accurately aminoacylated tRNAs are an a priori requirement for translation of the genetic code. They...
Genome‐scale analyses have shown numerous functional duplications in the canonical translational mac...
Translation of the genetic code requires attachment of tRNAs to their cognate amino acids. Errors du...
Human mitochondrial tRNA (hmt-tRNA) mutations are associated with a variety of diseases including mi...
AbstractStructural studies suggest rearrangement of the RNA-binding and catalytic domains of human m...
Sequence-specific interactions between aminoacyl-tRNA synthetases and their cognate tRNAs ensure bot...
The genetic code can be interpreted during translation as 21 amino acids and three termination signa...
An investigation of the role of tRNA in the catalysis of aminoacylation of Escherichia coli glutamin...