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Novel activity of eukaryotic translocase, eEF2: dissociation of the 80S ribosome into subunits with ATP but not with GTP

机译:真核生物转位酶eEF2的新活性:将80S核糖体解离成具有ATP的亚基,但不分解成具有GTP的亚基

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摘要

Ribosomes must dissociate into subunits in order to begin protein biosynthesis. The enzymes that catalyze this fundamental process in eukaryotes remained unknown. Here, we demonstrate that eukaryotic translocase, eEF2, which catalyzes peptide elongation in the presence of GTP, dissociates yeast 80S ribosomes into subunits in the presence of ATP but not GTP or other nucleoside triphosphates. Dissociation was detected by light scattering or ultracentrifugation after the split subunits were stabilized. ATP was hydrolyzed during the eEF2-dependent dissociation, while a non-hydrolyzable analog of ATP was inactive in ribosome splitting by eEF2. GTP inhibited not only ATP hydrolysis but also dissociation. Sordarin, a fungal eEF2 inhibitor, averted the splitting but stimulated ATP hydrolysis. Another elongation inhibitor, cycloheximide, also prevented eEF2/ATP-dependent splitting, while the inhibitory effect of fusidic acid on the splitting was nominal. Upon dissociation of the 80S ribosome, eEF2 was found on the subunits. We propose that the dissociation activity of eEF2/ATP plays a role in mobilizing 80S ribosomes for protein synthesis during the shift up of physiological conditions.
机译:核糖体必须解离成亚基才能开始蛋白质的生物合成。在真核生物中催化这一基本过程的酶仍然未知。在这里,我们证明真核易位酶eEF2在GTP存在下催化肽的延伸,在ATP而不是GTP或其他核苷三磷酸存在的情况下将酵母80S核糖体解离成亚基。在分裂的亚基稳定后,通过光散射或超速离心检测解离。 ATP在eEF2依赖性解离过程中被水解,而ATP的不可水解类似物在eEF2分裂核糖体中没有活性。 GTP不仅抑制ATP水解,而且抑制解离。真菌eEF2抑制剂Sordarin避免了分裂,但刺激了ATP水解。另一种伸长抑制剂,环己酰亚胺,也阻止了eEF2 / ATP依赖性分裂,而夫西地酸对分裂的抑制作用是正常的。 80S核糖体解离后,在亚基上发现了eEF2。我们提出,eEF2 / ATP的解离活性在生理条件上移的过程中,在动员80S核糖体进行蛋白质合成中起作用。

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