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1 sor to the essential hypermodified tRNA base queuosine.
2 1), the precursor to the modified nucleoside queuosine.
3 aguanine, a late step in the biosynthesis of queuosine.
4 on of tRNAs that are typically modified with queuosine.
5 step that also causes hydrolysis of glutamyl-queuosine.
6 biosynthesis of the hypermodified nucleoside queuosine.
7 biosynthesis of the tRNA-inserted nucleoside queuosine.
8                 The microbial metabolite pre-queuosine 1 (preQ(1)) is produced in the bacterial tRNA
9  for enzymes involved in the biosynthesis of queuosine, a 7-deazaguanine modified nucleoside found in
10 as an enzyme involved in the biosynthesis of queuosine, a 7-deazaguanosine modified nucleoside found
11 se to the intracellular concentration of the queuosine anabolic intermediate preQ(1).
12 es bacteria and the hypermodified tRNA bases queuosine and archaeosine.
13  this method periodate-dependent analysis of queuosine and sulfur modification sequencing (PAQS-seq).
14           Given that GTP is the precursor to queuosine and that a cyclohydrolase-like reaction was po
15 zodiazepine synthesis, production of queuine/queuosine, and excretion of dietary mercury.
16 g of how intracellular levels of queuine and queuosine are regulated and how their deficiency contrib
17 e fibers enriches microbial genes related to queuosine biosynthesis and preQ(0) biosynthesis and decr
18 preQ(1) riboswitch allows the fine-tuning of queuosine biosynthesis in response to the intracellular
19  (preQ(1)) is produced in the bacterial tRNA queuosine biosynthesis pathway, with unknown effects on
20 bacter confirmed that each was essential for queuosine biosynthesis, and the genes were renamed queCD
21 action was postulated as the initial step in queuosine biosynthesis, QueF was proposed to be the puta
22 s downstream encoded modification enzymes of queuosine biosynthesis.
23 nthase (PTPS) homologue possibly involved in queuosine biosynthesis.
24 sms of sensing preQ(1), which is involved in queuosine biosynthesis.
25 on of pre-Q(0) to pre-Q(1) in the nucleoside queuosine biosynthetic pathway.
26  the glutamyl side chain is connected to the Queuosine cyclopentene side chain, is unknown.
27                         While sugar-modified Queuosine derivatives are found in the tRNAs of vertebra
28  Restriction digestion analysis suggests the queuosine gene cassette encodes a pathway capable of mod
29 r common phage proteins (e.g., terminase), a queuosine gene cassette, a cas4 exonuclease, and an endo
30 nd in the tRNAs of vertebrates, glutamylated Queuosine (gluQ) is only known in bacteria.
31 RNA anticodon modification from guanosine to queuosine has coevolved with these genomic changes.
32 as a unique transporter for both queuine and queuosine in Schizosaccharomyces pombe and Trypanosoma b
33                                              Queuosine is one of the most complex hypermodified RNA n
34                               In addition to Queuosine itself, several further modified derivatives a
35 led that SLC35F2 is the sole transporter for queuosine (K(m) 174 nM) and a high-affinity transporter
36                                     Glutamyl-queuosine, like canonical Glu-tRNA, was hydrolyzed by mi
37  mechanism to harness exquisite control over queuosine metabolism.
38                                    Levels of queuosine modification in D. melanogaster reflect bioava
39 A nuclear export also affected the levels of queuosine modification in tRNAs.
40                                              Queuosine modification is present in most organisms but
41  that are most accurate given stage-specific queuosine modification levels.
42 ne transglycosylase (TGT) is involved in the queuosine modification of tRNAs in eukarya and eubacteri
43 l-studied queuine as substrate for host tRNA queuosine modification.
44 netic model, the known increased affinity of queuosine-modified tRNA for ribosomes increases the accu
45                   The steady-state levels of queuosine-modified tRNA in the insect form (procyclic) o
46 y complement mutants in the Escherichia coli queuosine pathway, of which ADG is an intermediate.
47 l-7-deazaguanine (preQ1), a late step in the queuosine pathway.
48                                              Queuosine (Q) and archaeosine (G(+)) are hypermodified r
49 he nucleobase queuine (q) and its nucleoside queuosine (Q) are micronutrients derived from bacteria t
50 ia coli that contain the modified nucleotide queuosine (Q) at the wobble position, thereby preventing
51 li that contain the hypermodified nucleoside queuosine (Q) at the wobble position.
52         One nearly universal modification is queuosine (Q) for guanine (G) in tRNA(His), tRNA(Asp), t
53           We identify two genes required for queuosine (Q) formation in mt-tRNAs.
54                                              Queuosine (Q) is a 7-deazaguanosine found in the first p
55                                              Queuosine (Q) is a complex tRNA modification widespread
56                                              Queuosine (Q) is a conserved tRNA modification at the wo
57                                              Queuosine (Q) is a hypermodified 7-deazaguanosine nucleo
58                                              Queuosine (Q) is a hypermodified base found in the wobbl
59                                              Queuosine (Q) is a hypermodified RNA base that replaces
60                      The modified nucleotide queuosine (Q) is almost universally found in the anticod
61 discoideum, are strongly stimulated by prior queuosine (Q) modification of the substrate tRNA.
62 sential precursor to the wobble modification queuosine (Q) on tRNAs reading GUN codons.
63                                              Queuosine (Q) was discovered in the wobble position of a
64 ost-transcriptional modifications, including queuosine (Q), a hypermodified 7-deaza-guanosine present
65 nthesis of the hypermodified tRNA nucleoside queuosine (Q), an unprecedented ribosyl transfer from th
66 lar metabolism, one exception is queuine (q)/queuosine (Q), which eukaryotes obtain from their enviro
67 e guanine (G) in tRNAs with GUN anticodon to queuosine (Q).
68 RNATyr, -Asp, -Asn and -His is modified with queuosine (Q34).
69  in tRNAs from a G in the wobble position to Queuosine that changes optimal binding from C to a sligh
70 ree precursor in the biosynthetic pathway of queuosine that is crucial for translation efficiency and
71 (4,5-dihydroxy-2-cyclopenten-1-yl) moiety of queuosine, the modified nucleoside occupying the first a
72 zymes in the de novo biosynthesis pathway of queuosine-transfer ribonucleic acid (Q-tRNA) that become
73                            In the absence of queuosine tRNA anticodon modification in streptomycetes,
74                                              Queuosine tRNA modification is synthesized de novo in ba
75 t of preQ1, a precursor of the modified base queuosine universally found in four tRNAs.
76 deazaguanosine have been identified in tRNA: queuosine, which is found at the wobble position of the