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1 We have previously shown that limitation for isoleucyl-tRNA can initiate a ribosome bypass when an AU
2 t less error-prone and kinetically optimized isoleucyl-tRNA(Ile) synthesis under cellular conditions.
3 ity determinant for proper aminoacylation by isoleucyl tRNA synthetase (IleRS) and codon recognition
4  orf, whose function is unknown; divIVA; and isoleucyl tRNA synthetase (ileS).
5                         In cattle, cytosolic isoleucyl-tRNA synthetase (IARS) missense mutations caus
6              For example, the close homologs isoleucyl-tRNA synthetase (IleRS) and valyl-tRNA synthet
7                                              Isoleucyl-tRNA synthetase (IleRS) catalyzes transfer of
8                             Escherichia coli isoleucyl-tRNA synthetase (IleRS) exploits both the tRNA
9                                              Isoleucyl-tRNA synthetase (IleRS) is an aminoacyl-tRNA s
10                                              Isoleucyl-tRNA synthetase (IleRS) is unusual among amino
11 milar amino acids, valine and isoleucine, by isoleucyl-tRNA synthetase (IleRS) results, in part, from
12 he rate of activation of 5TFI by the E. coli isoleucyl-tRNA synthetase (IleRS) yielded a specificity
13              Leucyl-tRNA synthetase (LeuRS), isoleucyl-tRNA synthetase (IleRS), and valyl-tRNA synthe
14              Leucyl-tRNA synthetase (LeuRS), isoleucyl-tRNA synthetase (IleRS), and valyl-tRNA synthe
15 he Staphylococcus aureus ileS gene, encoding isoleucyl-tRNA synthetase (IleRS), contains a long mRNA
16                       Here, it is shown that isoleucyl-tRNA synthetase (IleRS), which occasionally mi
17 e analog that inhibits the essential enzyme, isoleucyl-tRNA synthetase (IleRS).
18 Administration of mupirocin, an inhibitor of isoleucyl-tRNA synthetase activity, resulted in changes
19                             Here I show that isoleucyl-tRNA synthetase aminoacylates CoA-SH with vali
20 ied small molecules that inhibit recombinant isoleucyl-tRNA synthetase and that are lethal to the par
21 , which are also conserved in the homologous isoleucyl-tRNA synthetase and valyl-tRNA synthetase edit
22              Together with prior analyses of isoleucyl-tRNA synthetase and valyl-tRNA synthetase, the
23                                        Using isoleucyl-tRNA synthetase as an example, we placed mutat
24 s reliance on post-transfer editing, whereas isoleucyl-tRNA synthetase differs in retaining a distinc
25 ese eukaryote-like features, M. tuberculosis isoleucyl-tRNA synthetase exhibited highly specific cros
26             As an example, discrete sites in isoleucyl-tRNA synthetase for amino acid activation and
27 y halted before isoleucine codon by reducing isoleucyl-tRNA synthetase from reaction mixture of in vi
28 Methanosarcina species by mutagenesis of the isoleucyl-tRNA synthetase gene (ileS) from Methanosarcin
29              In this study, a novel group of isoleucyl-tRNA synthetase gene (ileS) T box leader seque
30               The monomeric Escherichia coli isoleucyl-tRNA synthetase has a zinc-containing peptide
31   We showed by RNAi knockdown that T. brucei isoleucyl-tRNA synthetase is essential for the parasites
32                             Escherichia coli isoleucyl-tRNA synthetase is one of five closely related
33                                 For example, isoleucyl-tRNA synthetase misactivates valine (to produc
34                      In the absence of tRNA, isoleucyl-tRNA synthetase misactivates valine, while val
35 Substitution of a homologous CP1 domain from isoleucyl-tRNA synthetase or mutation within the LeuRS C
36   Here we report that a specific mutation in isoleucyl-tRNA synthetase prevents editing by blocking t
37             Recent mutational analysis of an isoleucyl-tRNA synthetase showed that discrimination of
38 mutations in a presumptive "hinge region" of isoleucyl-tRNA synthetase that is situated between the t
39    Valyl-tRNA synthetase, a close homolog of isoleucyl-tRNA synthetase, misactivates threonine, alpha
40  eukaryote-like features, and unlike E. coli isoleucyl-tRNA synthetase, the M. tuberculosis enzyme ch
41                                          For isoleucyl-tRNA synthetase, these errors are reduced by t
42 as demonstrated by its ability to complement isoleucyl-tRNA synthetase-deficient mutants of E. coli.
43 hromosomally encoded organellar (apicoplast) isoleucyl-tRNA synthetase.
44  parasites had a mutation in the cytoplasmic isoleucyl-tRNA synthetase.
45  were investigated with an editing-defective isoleucyl-tRNA synthetase.
46 yl adenylates by editing synthetases such as isoleucyl-tRNA synthetase.
47 m with p43, as well as cross-reactivity with isoleucyl-tRNA synthetase.
48 ase of the particle and maps the location of isoleucyl-tRNA synthetase.
49 mary structure of Mycobacterium tuberculosis isoleucyl-tRNA synthetase.
50 by bacterial-type but not by eukaryotic-type isoleucyl-tRNA synthetases and might also be a determina
51                             Examples include isoleucyl-tRNA synthetases whose acquisition from eukary
52 or of Escherichia coli and other eubacterial isoleucyl-tRNA synthetases, but not of eukaryote cytopla
53 aryote cytoplasmic than to other eubacterial isoleucyl-tRNA synthetases.

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