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1 urine at position 33 (G33) in the C.albicans Ser-tRNA(CAG) anticodon loop, which replaces a conserved
6 a, the selenocysteine synthase SelA converts Ser-tRNA(Sec), formed by seryl-tRNA synthetase, to Sec-t
9 cteria, but the mechanism of conversion from Ser-tRNA(Sec) remained unresolved for archaea and eukary
15 -tRNA synthetase (SerRS), phosphorylation of Ser-tRNA(Sec) by O-phosphoseryl-tRNA(Sec) kinase (PSTK),
18 s, O-phosphoseryl-tRNA kinase phosphorylates Ser-tRNA to form the intermediate which is then modified
19 seryl-tRNA(Sec) kinase (PSTK) phosphorylates Ser-tRNA(Sec) to produce the O-phosphoseryl-tRNA(Sec) (S
22 on both the origin of the novel Candida spp. Ser-tRNA(CAG), which has mediated CTG reassignment, and
24 itro showed that air oxidation increased the Ser-tRNA(Thr) level in the presence of elongation factor
25 170 million years ago, but the origin of the Ser-tRNA(CAG) is more ancient, implying that the ancestr
27 the C. albicans genome demonstrate that the Ser-tRNA(CAG) is derived from a serine and not a leucine
28 182 residue critical for editing, leading to Ser-tRNA(Thr) formation and protein mistranslation that
29 Hydrogen peroxide oxidizes C182, leading to Ser-tRNA(Thr) production and mistranslation of threonine
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