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Your search keyword '"Anticodon metabolism"' showing total 424 results

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424 results on '"Anticodon metabolism"'

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201. Interdomain communication between weak structural elements within a disease-related human tRNA.

202. Dissecting the ribosomal inhibition mechanisms of edeine and pactamycin: the universally conserved residues G693 and C795 regulate P-site RNA binding.

203. Metal ion stabilization of the U-turn of the A37 N6-dimethylallyl-modified anticodon stem-loop of Escherichia coli tRNAPhe.

204. Decoding the genome: a modified view.

205. Quick two-step RNA ligation employing periodate oxidation.

206. tRNA hopping: effects of mutant tRNAs.

207. Structural basis for orthogonal tRNA specificities of tyrosyl-tRNA synthetases for genetic code expansion.

208. A critical role of water in the specific cleavage of the anticodon loop of some eukaryotic methionine initiator tRNAs.

209. Wobble modification differences and subcellular localization of tRNAs in Leishmania tarentolae: implication for tRNA sorting mechanism.

210. Making sense of mimic in translation termination.

211. An RNA complex of the HIV-1 A-loop and tRNA(Lys,3) is stabilized by nucleoside modifications.

212. Incorporation of non-natural amino acids into proteins.

213. Conformational preferences of the base substituent in hypermodified nucleotide queuosine 5'-monophosphate 'pQ' and protonated variant 'pQH+'.

214. Selection of tRNA by the ribosome requires a transition from an open to a closed form.

215. Universally conserved interactions between the ribosome and the anticodon stem-loop of A site tRNA important for translocation.

216. Problems with the transorientation hypothesis.

217. Functional annotation of class I lysyl-tRNA synthetase phylogeny indicates a limited role for gene transfer.

218. Solution conformations of unmodified and A(37)N(6)-dimethylallyl modified anticodon stem-loops of Escherichia coli tRNA(Phe).

219. Transfer RNA determinants for translational editing by Escherichia coli valyl-tRNA synthetase.

220. Interaction of RNA with phage display selected peptides analyzed by capillary electrophoresis mobility shift assay.

221. Trm7p catalyses the formation of two 2'-O-methylriboses in yeast tRNA anticodon loop.

222. The transorientation hypothesis for codon recognition during protein synthesis.

223. Prevention of mis-aminoacylation of a dual-specificity aminoacyl-tRNA synthetase.

224. Imbalance of tRNA(Pro) isoacceptors induces +1 frameshifting at near-cognate codons.

225. Convergence and constraint in eukaryotic release factor 1 (eRF1) domain 1: the evolution of stop codon specificity.

226. [Molecular mechanism of stop codon recognition by eRF1: a wobble hypothesis for peptide anticodons].

227. Anticodon domain methylated nucleosides of yeast tRNA(Phe) are significant recognition determinants in the binding of a phage display selected peptide.

228. Introduction of specialty functions by the position-specific incorporation of nonnatural amino acids into proteins through four-base codon/anticodon pairs.

229. Queuosine modification of tRNA: a case for convergent evolution.

230. The plant tRNA 3' processing enzyme has a broad substrate spectrum.

231. Recognition of cognate transfer RNA by the 30S ribosomal subunit.

232. Expanding the genetic code: selection of efficient suppressors of four-base codons and identification of "shifty" four-base codons with a library approach in Escherichia coli.

233. Charging two for the price of one.

234. Structural basis for anticodon recognition by discriminating glutamyl-tRNA synthetase.

235. Heteronuclear NMR studies of the interaction of tRNA(Lys)3 with HIV-1 nucleocapsid protein.

236. Importance of the anticodon sequence in the aminoacylation of tRNAs by methionyl-tRNA synthetase and by valyl-tRNA synthetase in an Archaebacterium.

237. Probing of metal-binding domains of RNA hairpin loops by laser-induced lanthanide(III) luminescence.

238. tRNA recognition of tRNA-guanine transglycosylase from a hyperthermophilic archaeon, Pyrococcus horikoshii.

239. Molecular mechanism of stop codon recognition by eRF1: a wobble hypothesis for peptide anticodons.

240. Specific interaction between anticodon nuclease and the tRNA(Lys) wobble base.

241. Context-dependent anticodon recognition by class I lysyl-tRNA synthetases.

242. tRNA aminoacylation by arginyl-tRNA synthetase: induced conformations during substrates binding.

243. Pseudouridine synthase 3 from mouse modifies the anticodon loop of tRNA.

244. Hypermodified nucleosides in the anticodon of tRNALys stabilize a canonical U-turn structure.

245. Photoaffinity polyamines: interactions with AcPhe-tRNA free in solution or bound at the P-site of Escherichia coli ribosomes.

246. The free yeast aspartyl-tRNA synthetase differs from the tRNA(Asp)-complexed enzyme by structural changes in the catalytic site, hinge region, and anticodon-binding domain.

247. Aspartyl tRNA-synthetase from Escherichia coli: flexibility and adaptability to the substrates.

248. An intermediate step in the recognition of tRNA(Asp) by aspartyl-tRNA synthetase.

249. Escherichia coli dimethylallyl diphosphate:tRNA dimethylallyltransferase: essential elements for recognition of tRNA substrates within the anticodon stem-loop.

250. Effects of anticodon 2'-O-methylations on tRNA codon recognition in an Escherichia coli cell-free translation.

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