コーパス検索結果 (left1)
通し番号をクリックするとPubMedの該当ページを表示します
1 mcd2-1, and show that the mutation lies in a tRNA(Ser)(CGA), which has been modified to translate the
3 38 in the anticodon loop, only tRNA(Ser)AGA, tRNA(Ser)CGA, tRNA(Ser)UGA, and selenocysteine tRNA with
6 His(GUG)) for Um, and tRNA(Pro(GGG)) for Am. tRNA(Ser(UGA)), previously observed as a TrmJ substrate
7 Although SerRS recognizes both tRNA(Sec) and tRNA(Ser) species, PSTK must discriminate Ser-tRNA(Sec)
8 condary structures of archaeal tRNA(Sec) and tRNA(Ser), we introduced mutations into Methanococcus ma
10 ends) analyses indicated that the four-armed tRNASer(UCN) gene is transcribed into a stable RNA that
11 cates that similarity between the four-armed tRNASer(UCN) genes is only 63.8% compared with an averag
12 he M. californianus and M. edulis four-armed tRNASer(UCN) sequences are interpreted as pseudo-tRNASer
13 ylation of variant transcripts of M. barkeri tRNASer was kinetically analyzed in vitro with pure enzy
14 ntity elements into the mitochondrial bovine tRNA(Ser) scaffold yielded chimeric tRNAs active both in
15 codon loop, only tRNA(Ser)AGA, tRNA(Ser)CGA, tRNA(Ser)UGA, and selenocysteine tRNA with UCA (tRNA([Se
16 1--72 through 5--68 base pairs of the E.coli tRNA(Ser) acceptor stem with the major recognition eleme
17 precision values for the analyses of E. coli tRNASer(VGA) and E. coli tRNAThr(GGU), unfractionated tR
18 Dihydrouridine content of Escherichia coli tRNASer(VGA) and tRNAThr(GGU) as controls were measured
19 d by the DHU arm-replacement loop-containing tRNASer(UCN), tRNASer(AGN), tRNAMet(AUA), tRNATrp, and t
20 ation of unspliced precursor RNAs of dimeric tRNA(Ser)-tRNA(Met)i, suggesting a novel nuclear role fo
24 DNA sequence analysis of cDNA clones for tRNA(Ser) and 18S rRNA confirmed the expected 3'-termina
25 tigate the requirements of these enzymes for tRNASer recognition, serylation of variant transcripts o
26 eotides at the base of the variable stem for tRNASer recognition, unlike its bacterial type counterpa
29 ich structural or sequence elements of human tRNA(Ser) are necessary for pseudouridine (Psi) formatio
30 y, carrot protoplasts transfected with human tRNA(Ser)AUC genes containing the lac operator (lacO) in
31 o acid identity and recognition of a type II tRNA(Ser) amber suppressor from a serine to a leucine re
33 ; the G15-C48 tertiary "Levitt base-pair" in tRNA(Ser) was changed to A15-U48; the number of nucleoti
34 ed to a disproportionately large increase in tRNA(Ser)UCA-C47:6U levels in sla1-rrm but not sla1-null
35 uch a distinction between the two enzymes in tRNASer identity determinants reflects their evolutionar
38 Nase P, was found to process a mitochondrial tRNA(Ser(UCN)) precursor [ptRNA(Ser(UCN))] at the correc
39 ion of the deafness-associated mitochondrial tRNA(Ser(UCN)) T7511C mutation, in conjunction with homo
40 addition to the non-canonical mitochondrial tRNA(Ser(AGY)), but no obvious qualitative differences i
41 utations investigated in human mitochondrial tRNA(Ser(UCN)) affect processing efficiency, and some af
43 n patient fibroblasts rendered mitochondrial tRNA(Ser(AGY)) undetectable, and markedly reduced mitoch
44 from defective CCA addition to mitochondrial tRNA(Ser(AGY)), and that the severity of this biochemica
46 ([Ser]Sec)UCA level was increased and the mt tRNA(Ser)UGA level was decreased, suggesting that TRIT1
48 ts confirm that insertion mutations lower mt-tRNA(Ser) melting temperature by 6-9 degrees C and incre
49 traints and hence destabilizes the mutant mt-tRNA(Ser) by approximately 0.6 kcal/mol relative to wild
50 ble loop by the 7472insC mutation reduces mt-tRNA(Ser) concentration in vivo through poorly understoo
51 e unique secondary structure of wild-type mt-tRNA(Ser) decrease the entropic cost of folding by appro
52 Mammalian mitochondrial tRNA(Ser(UCN)) (mt-tRNA(Ser)) and pyrrolysine tRNA (tRNA(Pyl)) fold to near
56 t in complex with the anticodon stem loop of tRNA(Ser) bound to the PsiAG stop codon in the A site.
59 -loop are seen in the cocrystal structure of tRNA(Ser) and Thermus thermophilus seryl-tRNA synthetase
62 ta show a sharp threshold in the capacity of tRNASer(UCN) to support the wild-type protein synthesis
63 21 derived from four isoacceptor families of tRNASer genes, 7 from five families of tRNALeu genes, an
64 two SerRSs do not possess a uniform mode of tRNASer recognition, and additional determinants are nec
65 quence A36A37A38 in the anticodon loop, only tRNA(Ser)AGA, tRNA(Ser)CGA, tRNA(Ser)UGA, and selenocyst
68 We demonstrate that for the wild-type pre-tRNA(Ser)CGA and other pre-tRNAs, Lhp1p is required for
71 ucture, while two [tRNASer(AGN) and a second tRNASer(UCN)] will fold only into tRNAs with a dihydrour
73 reover, a novel determinant for the specific tRNASer recognition was identified as the anticodon stem
74 ion to the point where the ochre-suppressing tRNA(Ser) is in four- to fivefold excess over the endoge
76 antation of these identity elements into the tRNA(Ser)(UGA) scaffold resulted in phosphorylation of t
78 (SerDelta); an amber suppressor in which the tRNA(Ser) type II extra-stem-loop is replaced by a conse
81 exhibited approximately 75% decrease in the tRNA(Ser(UCN)) level, compared with three control cybrid
83 sequence analyses found a duplication of the tRNA(Ser)UCA-C47:6U gene, which was shown to cause the p
84 verage reduction of approximately 70% in the tRNASer(UCN) level and a decrease of approximately 45% i
85 e that the mutation flanks the 3' end of the tRNASer(UCN) gene sequence and affects the rate but not
86 7 kbp upstream and is cotranscribed with the tRNASer(UCN) gene, with strong evidence pointing to a me
87 cture of the homologous Thermus thermophilus tRNA(Ser)-SerRS complex that Cusack and colleagues repor
88 -encoded tRNAs with A36A37A38, only mt tRNAs tRNA(Ser)UGA and tRNA(Trp)UCA contained detectable i6A37
89 r-armed tRNA secondary structure, while two [tRNASer(AGN) and a second tRNASer(UCN)] will fold only i
91 rm-replacement loop-containing tRNASer(UCN), tRNASer(AGN), tRNAMet(AUA), tRNATrp, and tRNAPro genes o
WebLSDに未収録の専門用語(用法)は "新規対訳" から投稿できます。