Abstract
The archaeal Sulfolobus solfataricus elongation factor 1α (SsEF-1α) bound to GTP or to its analogue guanyl-5'-yl imido diphosphate [Gpp(NH)p] formed a ternary complex with either Escherichia coli Val-tRNA(Val) or Saccharomyces cerevisiae Phe-tRNA(Phe) as demonstrated by gel-shift and gel-filtration experiments. Evidence of such an interaction also came from the observation that SsEF-1α · Gpp(NH)p was able to display a protective effect against either the spontaneous deacylation or the digestion of aminoacyl-tRNA by RNase A. Protection against the deacylation of aminoacyl-tRNA allowed evaluatation of the affinity of SsEF-1α · Gpp(NH)p for both aminoacyl-tRNAs used. The K'(d) values of the ternary complex containing S. cerevisiae Phe-tRNA(Phe) or E. coli Val-tRNA(Val) were 0.3 μM and 4.4 μM, respectively. In both cases, the affinity of SsEF-1α · Gpp(NH)p for aminoacyl-tRNA was three orders of magnitude lower than that of the homologous eubacterial ternary complexes, but comparable with the affinity shown by the ternary complex involving eukaryal EF-1α [Negrutskii, B.S. and El'skaya, A.V. (1998) Prog. Nucleic Acids Res. 60, 47-77]. As already observed with eukaryal EF-1α, SsEF-1α in its GDP-bound form was also able to protect the ester bond of aminoacyl-tRNA, even though with a 10-fold lower efficiency compared with SsEF-1α circle dot Gpp(NH)p. The overall results indicated that the archaeal elongation factor 1α shares several properties with eukaryal EF-1α but not with eubacterial EF-Tu.
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Raimo, G., Masullo, M., Lombardo, B., & Bocchini, V. (2000). The archaeal elongation factor 1α bound to GTP forms a ternary complex with eubacterial and eukaryal aminoacyl-tRNA. European Journal of Biochemistry, 267(19), 6012–6018. https://doi.org/10.1046/j.1432-1327.2000.01678.x
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