Chang Kai-Chun, Wen Jin-Der, Yang Lee-Wei
Institute of Molecular and Cellular Biology, National Taiwan University, Taipei 10617, Taiwan.
Institute of Bioinformatics and Structural Biology, National Tsing Hua University, Hsinchu 30013, Taiwan.
Biomed Res Int. 2015;2015:539238. doi: 10.1155/2015/539238. Epub 2015 Sep 20.
Although the dynamic motions and peptidyl transferase activity seem to be embedded in the rRNAs, the ribosome contains more than 50 ribosomal proteins (r-proteins), whose functions remain largely elusive. Also, the precise forms of some of these r-proteins, as being part of the ribosome, are not structurally solved due to their high flexibility, which hinders the efforts in their functional elucidation. Owing to recent advances in cryo-electron microscopy, single-molecule techniques, and theoretical modeling, much has been learned about the dynamics of these r-proteins. Surprisingly, allosteric regulations have been found in between spatially separated components as distant as those in the opposite sides of the ribosome. Here, we focus on the functional roles and intricate regulations of the mobile L1 and L12 stalks and L9 and S1 proteins. Conformational flexibility also enables versatile functions for r-proteins beyond translation. The arrangement of r-proteins may be under evolutionary pressure that fine-tunes mass distributions for optimal structural dynamics and catalytic activity of the ribosome.
尽管动态运动和肽基转移酶活性似乎嵌入在核糖体RNA(rRNAs)中,但核糖体包含50多种核糖体蛋白(r蛋白),其功能在很大程度上仍不清楚。此外,其中一些作为核糖体一部分的r蛋白的确切形式,由于其高度的灵活性,在结构上尚未得到解析,这阻碍了对其功能进行阐释的努力。由于冷冻电子显微镜、单分子技术和理论建模方面的最新进展,人们对这些r蛋白的动力学有了很多了解。令人惊讶的是,在核糖体相对两侧等空间上分离的组分之间发现了变构调节。在这里,我们重点关注可移动的L1和L12茎以及L9和S1蛋白的功能作用和复杂调节。构象灵活性还使r蛋白具有翻译以外的多种功能。r蛋白的排列可能受到进化压力的影响,这种压力会微调质量分布,以实现核糖体的最佳结构动力学和催化活性。