Kjeldgaard M, Nissen P, Thirup S, Nyborg J
Department of Chemistry, Aarhus University, Denmark.
Structure. 1993 Sep 15;1(1):35-50. doi: 10.1016/0969-2126(93)90007-4.
Elongation factor Tu (EF-Tu) is a GTP-binding protein that is crucial for protein biosynthesis. In the GTP form of the molecule, EF-Tu binds tightly to aminoacyl-tRNA, forming a ternary complex that interacts with the ribosomal acceptor site. During this interaction, GTP is hydrolyzed, and EF-Tu.GDP is ejected.
The crystal structure of EF-Tu from Thermus aquaticus, complexed to the GTP analogue GDPNP, has been determined at 2.5 A resolution and compared to the structure of Escherichia coli EF-Tu.GDP. During the transition from the GDP (inactive) to the GTP (active) form, domain 1, containing the GTP-binding site, undergoes internal conformational changes similar to those observed in ras-p21. In addition, a dramatic rearrangement of domains is observed, corresponding to a rotation of 90.8 degrees of domain 1 relative to domains 2 and 3. Residues that are affected in the binding of aminoacyl-tRNA are found in or near the cleft formed by the domain interface.
GTP binding by EF-Tu leads to dramatic conformational changes which expose the tRNA binding site. It appears that tRNA binding to EF-Tu induces a further conformational change, which may affect the GTPase activity.
延伸因子Tu(EF-Tu)是一种对蛋白质生物合成至关重要的GTP结合蛋白。在分子的GTP形式中,EF-Tu紧密结合氨酰tRNA,形成与核糖体受体位点相互作用的三元复合物。在这种相互作用过程中,GTP被水解,EF-Tu·GDP被排出。
嗜热水生栖热菌的EF-Tu与GTP类似物GDPNP复合的晶体结构已在2.5埃分辨率下确定,并与大肠杆菌EF-Tu·GDP的结构进行了比较。在从GDP(无活性)形式转变为GTP(活性)形式的过程中,包含GTP结合位点的结构域1经历了与在ras-p21中观察到的类似的内部构象变化。此外,观察到结构域的显著重排,对应于结构域1相对于结构域2和3旋转90.8度。在结构域界面形成的裂隙中或附近发现了影响氨酰tRNA结合的残基。
EF-Tu与GTP结合导致显著的构象变化,从而暴露tRNA结合位点。似乎tRNA与EF-Tu的结合会诱导进一步的构象变化,这可能会影响GTPase活性。