Structural Biology and Bio-Informatics Division, Indian Institute of Chemical Biology, Council of Scientific and Industrial Research, Jadavpur, Kolkata, West Bengal, India.
PLoS One. 2012;7(2):e31742. doi: 10.1371/journal.pone.0031742. Epub 2012 Feb 24.
Here we present analysis of a 3D cryo-EM map of the 70S ribosome from Mycobacterium smegmatis, a saprophytic cousin of the etiological agent of tuberculosis in humans, Mycobacterium tuberculosis. In comparison with the 3D structures of other prokaryotic ribosomes, the density map of the M. smegmatis 70S ribosome reveals unique structural features and their relative orientations in the ribosome. Dramatic changes in the periphery due to additional rRNA segments and extra domains of some of the peripheral ribosomal proteins like S3, S5, S16, L17, L25, are evident. One of the most notable features appears in the large subunit near L1 stalk as a long helical structure next to helix 54 of the 23S rRNA. The sharp upper end of this structure is located in the vicinity of the mRNA exit channel. Although the M. smegmatis 70S ribosome possesses conserved core structure of bacterial ribosome, the new structural features, unveiled in this study, demonstrates diversity in the 3D architecture of bacterial ribosomes. We postulate that the prominent helical structure related to the 23S rRNA actively participates in the mechanisms of translation in mycobacteria.
在这里,我们展示了分枝杆菌(导致人类结核病的病原体结核分枝杆菌的腐生表亲)70S 核糖体的 3D 冷冻电镜图谱的分析结果。与其他原核核糖体的 3D 结构相比,分枝杆菌 70S 核糖体的密度图谱揭示了核糖体中独特的结构特征及其相对取向。由于额外的 rRNA 片段和一些外周核糖体蛋白(如 S3、S5、S16、L17、L25)的额外结构域,导致外周发生了明显的变化。最显著的特征之一出现在大亚基靠近 L1 茎的位置,呈现出紧邻 23S rRNA 第 54 螺旋的长螺旋结构。该结构的尖锐上端位于 mRNA 出口通道附近。尽管分枝杆菌 70S 核糖体具有细菌核糖体的保守核心结构,但本研究揭示的新结构特征表明细菌核糖体的 3D 结构存在多样性。我们推测,与 23S rRNA 相关的突出螺旋结构积极参与分枝杆菌的翻译机制。