...
首页> 外文期刊>Journal of cell biology >Native 3D structure of eukaryotic 80s ribosome: morphological homology with E. coli 70S ribosome.
【24h】

Native 3D structure of eukaryotic 80s ribosome: morphological homology with E. coli 70S ribosome.

机译:真核80s核糖体的天然3D结构:与大肠杆菌70S核糖体的形态同源性。

获取原文
           

摘要

A three-dimensional reconstruction of the eukaryotic 80S monosome from a frozen-hydrated electron microscopic preparation reveals the native structure of this macromolecular complex. The new structure, at 38A resolution, shows a marked resemblance to the structure determined for the E. coli 70S ribosome (Frank, J., A. Verschoor, Y. Li, J. Zhu, R.K. Lata, M. Radermacher, P. Penczek, R. Grassucci, R.K. Agrawal, and Srivastava. 1996b. In press; Frank, J., J. Zhu, P. Penczek, Y. Li, S. Srivastava ., A. Verschoor, M. Radermacher, R. Grassucci, R.K. Lata, and R. Agrawal. 1995. Nature (Lond.).376:441-444.) limited to a comparable resolution, but with a number of eukaryotic elaborations superimposed. Although considerably greater size and intricacy of the features is seen in the morphology of the large subunit (60S vs 50S), the most striking differences are in the small subunit morphology (40S vs 30S): the extended beak and crest features of the head, the back lobes, and the feet. However, the structure underlying these extra features appears to be remarkably similar in form to the 30S portion of the 70S structure. The intersubunit space also appears to be strongly conserved, as might be expected from the degree of functional conservation of the ribosome among kingdoms (Eukarya, Eubacteria, and Archaea). The internal organization of the 80S structure appears as an armature or core of high-density material for each subunit, with the two cores linked by a single bridge between the platform region of the 40S subunit and the region below the presumed peptidyltransferase center of the 60S subunit. This may be equated with a close contact of the 18S and 28S rRNAs in the translational domain centered on the upper subunit:subunit interface.
机译:从冷冻水合电子显微镜制备的真核80S单核糖体的三维重建揭示了这种高分子复合物的天然结构。分辨率为38A的新结构显示出与大肠杆菌70S核糖体确定的结构显着相似(Frank,J.,A.Verschoor,Y. Li,Zhu.Zhu,RK Lata,M. Penczek,R。Grassucci,RK Agrawal和Srivastava。1996b。印刷中; Frank,J.,J。Zhu,P。Penczek,Y。Li,S。Srivastava。,A。Verschoor,M。Radermacher,R。Grassucci ,RK Lata和R.Agrawal.1995.Nature(Lond。)。376:441-444。)限于可比较的分辨率,但是叠加了许多真核生物。尽管在较大的亚基(60S与50S)的形态中可以看到较大的特征尺寸和复杂性,但最大的区别在于较小的亚基形态(40S与30S):头部的喙和冠状特征扩展,后瓣和脚。但是,这些额外特征所基于的结构在形式上似乎与70S结构的30S部分非常相似。亚基间的空间似乎也很保守,这可以从王国(真核生物,真细菌和古细菌)之间核糖体的功能保守程度来预期。 80S结构的内部结构表现为每个亚基的高密度材料的骨架或核心,两个核心通过40S亚基的平台区域和60S假定的肽基转移酶中心以下区域之间的单个桥连接在一起亚基。这可以等同于以上部亚基:亚基界面为中心的翻译域中18S和28S rRNA的紧密接触。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号