al-Karadaghi S, Aevarsson A, Garber M, Zheltonosova J, Liljas A
Department of Molecular Biophysics, Lund University, Sweden.
Structure. 1996 May 15;4(5):555-65. doi: 10.1016/s0969-2126(96)00061-5.
Elongation factor G (EF-G) catalyzes the translocation step of translation. During translocation EF-G passes through four main conformational states: the GDP complex, the nucleotide-free state, the GTP complex, and the GTPase conformation. The first two of these conformations have been previously investigated by crystallographic methods.
The structure of EF-G-GDP has been refined at 2.4 A resolution. Comparison with the nucleotide-free structure reveals that, upon GDP release, the phosphate-binding loop (P-loop) adopts a closed conformation. This affects the position of helix CG, the switch II loop and domains II, IV and V. Asp83 has a conformation similar to the conformation of the corresponding residue in the EF-Tu/EF-Ts complex. The magnesium ion is absent in EF-G-GDP.
The results illustrate that conformational changes in the P-loop can be transmitted to other parts of the structure. A comparison of the structures of EF-G and EF-Tu suggests that EF-G, like EF-Tu, undergoes a transition with domain rearrangements. The conformation of EF-G-GDP around the nucleotide-binding site may be related to the mechanism of nucleotide exchange.
延伸因子G(EF-G)催化翻译过程中的转位步骤。在转位过程中,EF-G会经历四种主要构象状态:GDP复合物、无核苷酸状态、GTP复合物和GTP酶构象。前两种构象此前已通过晶体学方法进行了研究。
EF-G-GDP的结构已在2.4埃分辨率下得到优化。与无核苷酸结构的比较表明,GDP释放后,磷酸结合环(P环)会采取闭合构象。这会影响螺旋CG、开关II环以及结构域II、IV和V的位置。Asp83的构象与EF-Tu/EF-Ts复合物中相应残基的构象相似。EF-G-GDP中不存在镁离子。
结果表明P环中的构象变化可以传递到结构的其他部分。EF-G和EF-Tu结构的比较表明,EF-G与EF-Tu一样,会经历结构域重排的转变。EF-G-GDP在核苷酸结合位点周围的构象可能与核苷酸交换机制有关。