A mechanism for stop codon recognition by the ribosome: a bioinformatic approach.

scientific article

A mechanism for stop codon recognition by the ribosome: a bioinformatic approach. is …
instance of (P31):
scholarly articleQ13442814

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P932PMC publication ID1370208
P698PubMed publication ID11780625

P2093author name stringV Ivanov
A Beniaminov
A Mikheyev
E Minyat
P2860cites workTranslational termination: "stop" for protein synthesis or "pause" for regulation of gene expressionQ35912234
Errors and alternatives in reading the universal genetic code.Q37055639
Nuclear magnetic resonance studies of codon-anticodon interaction in tRNAPhe. I. Effect of binding complementary tetra and pentanucleotides to the anticodonQ38356742
Ribosomal translocation: facts and modelsQ39839972
Structure and properties of a bovine liver UGA suppressor serine tRNA with a tryptophan anticodonQ48408701
The involvement of two distinct regions of 23 S ribosomal RNA in tRNA selection.Q54598388
Isolation of a rat mitochondrial release factor. Accommodation of the changed genetic code for termination.Q54766568
A tripeptide 'anticodon' deciphers stop codons in messenger RNA.Q55033645
Conformation of the Anticodon Loop in tRNAQ59034824
Translation of the UGA triplet in vitro by tryptophan transfer RNA'sQ69938785
UGA: a split personality in the universal genetic codeQ70703365
A pseudoknot-compatible universal site is located in the large ribosomal RNA in the peptidyltransferase centerQ74664310
X-ray crystal structures of 70S ribosome functional complexesQ27619733
Solution structure of the E. coli 70S ribosome at 11.5 A resolutionQ27621780
The 3D arrangement of the 23 S and 5 S rRNA in the Escherichia coli 50 S ribosomal subunit based on a cryo-electron microscopic reconstruction at 7.5 A resolutionQ27622130
The complete atomic structure of the large ribosomal subunit at 2.4 A resolutionQ27626400
Crystal structure of the ribosome at 5.5 A resolutionQ27630949
Structure of an RNA internal loop consisting of tandem C-A+ base pairsQ27765166
Direct recognition of mRNA stop signals by Escherichia coli polypeptide chain release factor twoQ28304699
Recent evidence for evolution of the genetic codeQ28776139
An rRNA fragment and its antisense can alter decoding of genetic informationQ32065052
Ribosomal mechanics, antibiotics, and GTP hydrolysisQ33641403
Unique structural and stabilizing roles for the individual pseudouridine residues in the 1920 region of Escherichia coli 23S rRNAQ33689050
Translational termination comes of age.Q33925679
Mimicry grasps reality in translation terminationQ33929497
Nonintercalating DNA-binding ligands: specificity of the interaction and their use as tools in biophysical, biochemical and biological investigations of the genetic materialQ34038905
The complete mitochondrial genome of Alligator mississippiensis and the separation between recent archosauria (birds and crocodiles).Q34449669
Release factors differing in specificity for terminator codonsQ34700481
P433issue12
P407language of work or nameEnglishQ1860
P921main subjectbioinformaticsQ128570
P304page(s)1683-1692
P577publication date2001-12-01
P1433published inRNAQ7277164
P1476titleA mechanism for stop codon recognition by the ribosome: a bioinformatic approach
P478volume7

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cites work (P2860)
Q41786393Are stop codons recognized by base triplets in the large ribosomal RNA subunit?
Q73793652Comparative study of translation termination sites and release factors (RF1 and RF2) in procaryotes
Q24537633Invariant amino acids essential for decoding function of polypeptide release factor eRF1.
Q21146058Parallel evolution of the genetic code in arthropod mitochondrial genomes.
Q28752338Recoding of translation in turtle mitochondrial genomes: programmed frameshift mutations and evidence of a modified genetic code
Q37893830Structural aspects of translation termination on the ribosome
Q26863528Termination of protein synthesis in mammalian mitochondria
Q24540309Termination of translation: interplay of mRNA, rRNAs and release factors?
Q24607940The enigmatic mitochondrial genome of Rhabdopleura compacta (Pterobranchia) reveals insights into selection of an efficient tRNA system and supports monophyly of Ambulacraria