Jeppesen Mads Gravers, Navratil Tomas, Spremulli Linda Lucy, Nyborg Jens
Department of Molecular Biology, University of Aarhus, Gustav Wieds Vej 10 C, 8000 Aarhus C, Denmark.
J Biol Chem. 2005 Feb 11;280(6):5071-81. doi: 10.1074/jbc.M411782200. Epub 2004 Nov 22.
The three-dimensional structure of the bovine mitochondrial elongation factor (EF)-Tu.Ts complex (EF-Tumt.Tsmt) has been determined to 2.2-A resolution using the multi-wavelength anomalous dispersion experimental method. This complex provides the first insight into the structure of EF-Tsmt. EF-Tsmt is similar to Escherichia coli and Thermus thermophilus EF-Ts in the amino-terminal domain. However, the structure of EF-Tsmt deviates considerably in the core domain with a five-stranded beta-sheet forming a portion of subdomain N of the core. In E. coli EF-Ts, this region is composed of a three-stranded sheet. The coiled-coil domain of the E. coli EF-Ts is largely eroded in EF-Tsmt, in which it consists of a large loop packed against subdomain C of the core. The conformation of bovine EF-Tumt in complex with EF-Tsmt is distinct from its conformation in the EF-Tumt.GDP complex. When domain III of bovine EF-Tumt.GDP is superimposed on domain III of EF-Tumt in the EF-Tumt.Tsmt complex, helix B from domain I is also almost superimposed. However, the rest of domain I is rotated relative to this helix toward domain II, which itself is rotated toward domain I relative to domain III. Extensive contacts are observed between the amino-terminal domain of EF-Tsmt and domain I of EF-Tumt. Furthermore, the conserved TDFV sequence of EF-Tsmt also contacts domain I with the side chain of Asp139 contacting helix B of EF-Tumt and inserting the side chain of Phe140 between helices B and C. The structure of the EF-Tumt.Tsmt complex provides new insights into the nucleotide exchange mechanism and provides a framework for explaining much of the mutational data obtained for this complex.
利用多波长反常色散实验方法,已将牛线粒体延伸因子(EF)-Tu.Ts复合物(EF-Tumt.Tsmt)的三维结构解析到2.2埃的分辨率。该复合物首次揭示了EF-Tsmt的结构。EF-Tsmt在氨基末端结构域与大肠杆菌和嗜热栖热菌的EF-Ts相似。然而,EF-Tsmt的核心结构域有很大差异,其由一个五链β折叠构成核心亚结构域N的一部分。在大肠杆菌EF-Ts中,该区域由一个三链片层组成。大肠杆菌EF-Ts的卷曲螺旋结构域在EF-Tsmt中大部分被侵蚀,在EF-Tsmt中它由一个大的环组成,该环紧靠核心的亚结构域C堆积。与EF-Tsmt结合的牛EF-Tumt的构象与其在EF-Tumt.GDP复合物中的构象不同。当将牛EF-Tumt.GDP的结构域III与EF-Tumt.Tsmt复合物中EF-Tumt的结构域III叠加时,结构域I的螺旋B也几乎完全重叠。然而,结构域I的其余部分相对于该螺旋向结构域II旋转,而结构域II本身相对于结构域III向结构域I旋转。在EF-Tsmt的氨基末端结构域与EF-Tumt的结构域I之间观察到广泛的相互作用。此外,EF-Tsmt保守的TDFV序列也与结构域I相互作用,其中Asp139的侧链与EF-Tumt的螺旋B接触,并将Phe140的侧链插入螺旋B和C之间。EF-Tumt.Tsmt复合物的结构为核苷酸交换机制提供了新的见解,并为解释该复合物获得的许多突变数据提供了框架。