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首页> 外文期刊>Extremophiles: Life under extreme conditions >Archaeal elongation factor 1 alpha from Sulfolobus solfataricus interacts with the eubacterial antibiotic GE2270A
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Archaeal elongation factor 1 alpha from Sulfolobus solfataricus interacts with the eubacterial antibiotic GE2270A

机译:来自Sulfolobus solfataricus的古细菌伸长因子1 alpha与真细菌抗生素GE2270A相互作用

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摘要

The thiazolyl-peptide antibiotic GE2270A, an inhibitor of the elongation factor Tu from Escherichia coli (EcEF-Tu), was used to study the effects produced in the biochemical properties of the archaeal functional analogue elongation factor 1alpha from Sulfolobus solfataricus (SsEF-1alpha). GE2270A did not substantially affect the poly(U)-directed-poly(Phe) incorporation catalyzed by SsEF-1alpha and the formation of the ternary complex SsEF-1alpha.GTP.Phe-tRNA(Phe). On the other hand, the antibiotic was able to increase the GDP/GTP exchange rate of SsEF-1alpha; nevertheless, this improvement was not associated with an increase in the catalytic activity of the enzyme. In fact, GE2270A inhibited both the intrinsic GTPase of SsEF-1alpha (GTPase(Na)) and that stimulated by ribosomes. Interestingly, GTPase(Na) of both intact and C-terminal-deleted SsEF-1alpha resulted in a greater sensitivity to the antibiotic with respect to SsEF-1alpha lacking both the M- and C-terminal domains. This result suggested that, similar to what is found for EcEF-Tu, the M domain of SsEF-1alpha is the region of the enzyme most responsible for the interaction with GE2270A. The different behavior observed in the inhibition of protein synthesis with respect to EcEF-Tu can be ascribed to the different adaptive structural changes that have occurred in SsEF-1alpha during evolution.
机译:噻唑基肽抗生素GE2270A(一种来自大肠杆菌的延伸因子Tu(EcEF-Tu)的抑制剂)被用于研究Sulfolobus solfataricus(SsEF-1alpha)的古细菌功能类似物延伸因子1alpha的生化特性。 。 GE2270A基本上不会影响由SsEF-1alpha催化的poly(U)-directed-poly(Phe)掺入和三元复合物SsEF-1alpha.GTP.Phe-tRNA(Phe)的形成。另一方面,抗生素能够提高SsEF-1alpha的GDP / GTP汇率;然而,这种改善与酶催化活性的增加无关。实际上,GE2270A既抑制SsEF-1alpha的固有GTPase(GTPase(Na)),又抑制了核糖体的内在GTPase。有趣的是,相对于缺少M-和C-末端结构域的SsEF-1alpha,完整和C-末端缺失的SsEF-1alpha的GTPase(Na)导致对抗生素的敏感性更高。该结果表明,与EcEF-Tu相似,SsEF-1alpha的M结构域是最负责与GE2270A相互作用的酶区域。相对于EcEF-Tu,在蛋白质合成抑制中观察到的不同行为可归因于在进化过程中SsEF-1alpha中发生的不同适应性结构变化。

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