Cook W J, Jeffrey L C, Xu Y, Chau V
Department of Pathology, University of Alabama at Birmingham 35294.
Biochemistry. 1993 Dec 21;32(50):13809-17. doi: 10.1021/bi00213a009.
The three-dimensional structure of a yeast ubiquitin-conjugating enzyme, encoded by the Saccharomyces cerevisiae UBC4 gene, has been determined at 2.7 A. The structure was solved using molecular replacement techniques and refined by simulated annealing to an R-factor of 0.198. Bond lengths and angles in the molecule have root mean square deviations from ideal values of 0.018 A and 4.0 degrees, respectively. Ubc4 is an alpha/beta protein with four alpha-helices and a four-stranded antiparallel beta-sheet. The ubiquitin-accepting cysteine is located in a cleft between two loops. Comparison with the recently determined structure of a different plant enzyme suggests that class I ubiquitin-conjugating enzymes are highly conserved in their three-dimensional folding. Except for two extra residues at the N- and the C-terminus of the plant enzyme, the C alpha atoms of the two enzymes can be superimposed with a root mean square deviation of only 1.52 A. Greater variations are found between the surfaces of the two molecules, as most of the identical residues between the two enzymes are either buried or clustered on the surface that lies adjacent to the ubiquitin-accepting cysteine. We suggest that this conserved surface functions in protein-protein binding during ubiquitin thiol ester formation.
由酿酒酵母UBC4基因编码的酵母泛素结合酶的三维结构已在2.7埃分辨率下确定。该结构通过分子置换技术解析,并经模拟退火精修,R因子为0.198。分子中的键长和键角与理想值的均方根偏差分别为0.018埃和4.0度。Ubc4是一种α/β蛋白,有四个α螺旋和一个四链反平行β折叠片层。泛素接受半胱氨酸位于两个环之间的裂隙中。与最近确定的另一种植物酶的结构比较表明,I类泛素结合酶在三维折叠上高度保守。除了植物酶N端和C端的两个额外残基外,两种酶的Cα原子可以以仅1.52埃的均方根偏差进行叠加。在两个分子的表面发现了更大的差异,因为两种酶之间的大多数相同残基要么被埋藏,要么聚集在与泛素接受半胱氨酸相邻的表面上。我们认为,这个保守表面在泛素硫酯形成过程中的蛋白质-蛋白质结合中起作用。