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1. Human TRUB1 is a highly conserved pseudouridine synthase responsible for the formation of Ψ55 in mitochondrial tRNAAsn, tRNAGln, tRNAGlu and tRNAPro

2. Human TRUB1 is a highly conserved pseudouridine synthase responsible for the formation of Ψ55 in mitochondrial tRNAAsn, tRNAGln, tRNAGlu and tRNAPro.

3. Discovery and Characterization of Chemical Compounds That Inhibit the Function of Aspartyl-tRNA Synthetase from Pseudomonas aeruginosa

4. Broadening the phenotype of m.5703G>A mutation in mitochondrial tRNAAsn gene from mitochondrial myopathy to myoclonic epilepsy with ragged red fibers syndrome

5. Anticodon-binding domain swapping in a nondiscriminating aspartyl-tRNA synthetase reveals contributions to tRNA specificity and catalytic activity

6. Bacterial Aspartyl-tRNA Synthetase Has Glutamyl-tRNA Synthetase Activity

7. The Bacillus subtilis and Bacillus halodurans Aspartyl-tRNA Synthetases Retain Recognition of tRNAAsn

8. Distinct segregation of the pathogenic m.5667GA mitochondrial tRNA

9. Myasthenia graves-like symptoms associated with rare mitochondrial mutation (m.5728TC)

10. Structure of the Pseudomonas aeruginosa transamidosome reveals unique aspects of bacterial tRNA-dependent asparagine biosynthesis

11. Crystal structure of the N-terminal anticodon-binding domain of the nondiscriminating aspartyl-tRNA synthetase from Helicobacter pylori

12. The asparagine-transamidosome from Helicobacter pylori: a dual-kinetic mode in non-discriminating aspartyl-tRNA synthetase safeguards the genetic code

13. Low modularity of aminoacyl-tRNA substrates in polymerization by the ribosome

14. Intraphylum Diversity and Complex Evolution of Cyanobacterial Aminoacyl-tRNA Synthetases

15. Conserved Discrimination against Misacylated tRNAs by Two Mesophilic Elongation Factor Tu Orthologs

16. Methanothermobacter thermautotrophicus tRNAGln Confines the Amidotransferase GatCAB to Asparaginyl-tRNAAsn Formation

17. Assays for transfer RNA-dependent amino acid biosynthesis

18. Characterization of Integrative and Conjugative Element ICE Kp1 -Associated Genomic Heterogeneity in a Klebsiella pneumoniae Strain Isolated from a Primary Liver Abscess

19. The Helicobacter pylori Amidotransferase GatCAB Is Equally Efficient in Glutamine-dependent Transamidation of Asp-tRNAAsn and Glu-tRNAGln

20. Independent acquisition of site-specific recombination factors by asn tRNA gene-targeting genomic islands

21. Structural Basis of the Water-assisted Asparagine Recognition by Asparaginyl-tRNA Synthetase

22. A Non‐Discriminating Aspartyl‐tRNA Synthetase fromHalobacterium salinarum

23. Expression of small RNAs by Bacillus sp. strain PS3 and B. subtilis cells during sporulation

24. Two Residues in the Anticodon Recognition Domain of the Aspartyl-tRNA Synthetase from Pseudomonas aeruginosa Are Individually Implicated in the Recognition of tRNA Asn

25. Aspartyl-tRNA Synthetase Requires a Conserved Proline in the Anticodon-binding Loop for tRNAAsn Recognition in Vivo

26. Determination of queuosine derivatives by reverse-phase liquid chromatography for the hypomodification study of Q-bearing tRNAs from various mammal liver cells

27. Complete mitochondrial genome of the whitetip reef shark Triaenodon obesus (Carcharhiniformes: Carcharhinidae)

28. A Single Amidotransferase Forms Asparaginyl-tRNA and Glutaminyl-tRNA in Chlamydia trachomatis

29. Aminoacylation of Plasmodium falciparum tRNA(Asn) and insights in the synthesis of asparagine repeats

30. Expression of the two chloroplast-like tRNA Asn genes in potato mitochondria: mapping of transcription initiation sites present in the trnN1-trnY-nad2 cluster and upstream of trnN2

31. A Disease-Associated G5703A Mutation in Human Mitochondrial DNA Causes a Conformational Change and a Marked Decrease in Steady-State Levels of Mitochondrial tRNAAsn

32. Two novel gene orders and the role of light-strand replication in rearrangement of the vertebrate mitochondrial genome

33. Two-codon T-box riboswitch binding two tRNAs

34. Asn-tRNA in Lactobacillus Bulgaricus is Formed by Asparaginylation of tRNA and not by Transamidation of Asp-tRNA

35. A 460-kb DNA Sequence of the Escherichia coli K-12 Genome Corresponding to the 40.1-50.0 min Region on the Linkage Map

36. Genetic selection for activeE.coliamber tRNAAsnexclusively led to glutamine inserting suppressors

37. Identification of the novel mutation m.5658TC in the mitochondrial tRNA(Asn) gene in a patient with myopathy, bilateral ptosis and ophthalmoparesis

38. Chronic Progressive External Ophthalmoplegia Is Associated with a Novel Mutation in the Mitochondrial tRNAAsn Gene

39. The novel mitochondrial tRNAAsn gene mutation m.5709T>C produces ophthalmoparesis and respiratory impairment

40. Mitochondrial myopathy in a child with a muscle-restricted mutation in the mitochondrial transfer RNAAsn gene

41. The anticodon and discriminator base are important for aminoacylation of Escherichia coli tRNA(Asn)

42. Crystal structure of a transfer-ribonucleoprotein particle that promotes asparagine formation

43. The T box regulatory element controlling expression of the class I lysyl-tRNA synthetase of Bacillus cereus strain 14579 is functional and can be partially induced by reduced charging of asparaginyl-tRNAAsn

44. Profiling non-lysyl tRNAs in HIV-1

45. Escherichia coli tRNAAsp recognition mechanism differing from that of the yeast system

46. A primate transfer RNA gene cluster and the evolution of human chromosome 1

47. The complete sequence of a 10·8kb fragment to the right of the chromosome III centromere ofSaccharomyces cerevisiae

48. Two distinct regions in Staphylococcus aureus GatCAB guarantee accurate tRNA recognition

49. Ribosomal frameshifting in response to hypomodified tRNAs in Xenopus oocytes

50. tRNA-dependent asparagine formation in prokaryotes: Characterization, isolation and structural and functional analysis of a ribonucleoprotein particle generating Asn-tRNAAsn

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