Czworkowski J, Moore P B
Department of Chemistry, Yale University, P.O. Box 208107, New Haven, Connecticut 06520-8107, USA.
Biochemistry. 1997 Aug 19;36(33):10327-34. doi: 10.1021/bi970610k.
The elongation phase of protein synthesis is promoted by two G proteins, elongation factor Tu (EF-Tu), which delivers aminoacyl tRNAs to the ribosome, and elongation factor G (EF-G), which catalyzes translocation. Crystallographic investigations have revealed that EF-G.GDP resembles the EF-Tu.GTP.(aminoacyl tRNA) complex, and it has been proposed that the translocase function of EF-G is derived from this similarity [Nissen, P., et al. (1995) Science 270, 1464]. However, its significance is uncertain because the affinity of EF-G.GDP for the ribosome is much lower than that of the ternary complex it resembles and because EF-Tu.GDP, the form of EF-Tu that has low ribosome affinity, has a conformation radically different from that of EF-Tu.GTP or EF-Tu in the ternary complex. The small-angle X-ray scattering study described here was undertaken to ascertain if the form of EF-G that has high ribosome affinity, EF-G.GTP, the structure of which is unknown, could be a mimic of EF-Tu.GDP. The data show that nucleotide-free EF-G, EF-G.GDP, EF-G. GTP, and EF-G.GMPPCP cannot be distinguished by solution scattering and that it is likely they all resemble crystalline EF-G.GDP. Since an EF-Tu-like change would easily have been detected, it follows that it does not occur in EF-G. These observations have significant implications for the mechanism of translocation.
蛋白质合成的延伸阶段由两种G蛋白促进,即延伸因子Tu(EF-Tu),它将氨酰tRNA转运到核糖体;以及延伸因子G(EF-G),它催化转位。晶体学研究表明,EF-G.GDP类似于EF-Tu.GTP·(氨酰tRNA)复合物,并且有人提出EF-G的转位酶功能源于这种相似性[Nissen,P.等人(1995年)《科学》270,1464]。然而,其意义尚不确定,因为EF-G.GDP对核糖体的亲和力远低于它所类似的三元复合物,而且EF-Tu.GDP,即对核糖体亲和力较低的EF-Tu形式,其构象与三元复合物中的EF-Tu.GTP或EF-Tu有根本不同。此处描述的小角X射线散射研究旨在确定具有高核糖体亲和力的EF-G形式,即EF-G.GTP(其结构未知)是否可能模拟EF-Tu.GDP。数据表明,无核苷酸的EF-G、EF-G.GDP、EF-G.GTP和EF-G.GMPPCP在溶液散射中无法区分,并且它们可能都类似于晶体EF-G.GDP。由于类似EF-Tu的变化很容易被检测到,所以可以推断它不会在EF-G中发生。这些观察结果对转位机制具有重要意义。