Klein D J, Moore P B, Steitz T A
Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT 06520-8114, USA.
J Mol Biol. 2004 Jun 25;340(1):141-77. doi: 10.1016/j.jmb.2004.03.076.
The structures of ribosomal proteins and their interactions with RNA have been examined in the refined crystal structure of the Haloarcula marismortui large ribosomal subunit. The protein structures fall into six groups based on their topology. The 50S subunit proteins function primarily to stabilize inter-domain interactions that are necessary to maintain the subunit's structural integrity. An extraordinary variety of protein-RNA interactions is observed. Electrostatic interactions between numerous arginine and lysine residues, particularly those in tail extensions, and the phosphate groups of the RNA backbone mediate many protein-RNA contacts. Base recognition occurs via both the minor groove and widened major groove of RNA helices, as well as through hydrophobic binding pockets that capture bulged nucleotides and through insertion of amino acid residues into hydrophobic crevices in the RNA. Primary binding sites on contiguous RNA are identified for 20 of the 50S ribosomal proteins, which along with few large protein-protein interfaces, suggest the order of assembly for some proteins and that the protein extensions fold cooperatively with RNA. The structure supports the hypothesis of co-transcriptional assembly, centered around L24 in domain I. Finally, comparing the structures and locations of the 50S ribosomal proteins from H.marismortui and D.radiodurans revealed striking examples of molecular mimicry. These comparisons illustrate that identical RNA structures can be stabilized by unrelated proteins.
在嗜盐嗜碱菌大核糖体亚基的精细晶体结构中,对核糖体蛋白的结构及其与RNA的相互作用进行了研究。根据拓扑结构,蛋白质结构可分为六组。50S亚基蛋白的主要功能是稳定维持亚基结构完整性所必需的结构域间相互作用。观察到了种类繁多的蛋白质-RNA相互作用。众多精氨酸和赖氨酸残基,特别是那些位于尾部延伸部分的残基,与RNA主链的磷酸基团之间的静电相互作用介导了许多蛋白质-RNA接触。碱基识别通过RNA螺旋的小沟和变宽的大沟,以及通过捕获凸起核苷酸的疏水结合口袋和通过将氨基酸残基插入RNA中的疏水缝隙来实现。为50S核糖体蛋白中的20种确定了连续RNA上的主要结合位点,这与少数大的蛋白质-蛋白质界面一起,暗示了一些蛋白质的组装顺序,并且蛋白质延伸部分与RNA协同折叠。该结构支持以结构域I中的L24为中心的共转录组装假说。最后,比较嗜盐嗜碱菌和耐辐射奇异球菌50S核糖体蛋白的结构和位置,发现了显著的分子模拟实例。这些比较表明,不相关的蛋白质可以稳定相同的RNA结构。