Science for Life Laboratory, Department of Biochemistry and Biophysics, Stockholm University, 17165, Solna, Sweden.
Department of Medical Biochemistry and Biophysics, Karolinska Institute, 17177, Stockholm, Sweden.
Nat Commun. 2022 Oct 17;13(1):6132. doi: 10.1038/s41467-022-33582-5.
Mitoribosomes of green algae display a great structural divergence from their tracheophyte relatives, with fragmentation of both rRNA and proteins as a defining feature. Here, we report a 2.9 Å resolution structure of the mitoribosome from the alga Polytomella magna harbouring a reduced rRNA split into 13 fragments. We found that the rRNA contains a non-canonical reduced form of the 5S, as well as a permutation of the LSU domain I. The mt-5S rRNA is stabilised by mL40 that is also found in mitoribosomes lacking the 5S, which suggests an evolutionary pathway. Through comparison to other ribosomes with fragmented rRNAs, we observe that the pattern is shared across large evolutionary distances, and between cellular compartments, indicating an evolutionary convergence and supporting the concept of a primordial fragmented ribosome. On the protein level, eleven peripherally associated HEAT-repeat proteins are involved in the binding of 3' rRNA termini, and the structure features a prominent pseudo-trimer of one of them (mL116). Finally, in the exit tunnel, mL128 constricts the tunnel width of the vestibular area, and mL105, a homolog of a membrane targeting component mediates contacts with an inner membrane bound insertase. Together, the structural analysis provides insight into the evolution of the ribosomal machinery in mitochondria.
绿藻的线粒体核糖体显示出与它们的维管束植物亲缘关系的巨大结构差异,其 rRNA 和蛋白质的碎片化是其特征之一。在这里,我们报道了一种来自 Polytomella magna 的藻类线粒体核糖体的 2.9 Å分辨率结构,该核糖体的 rRNA 被分割成 13 个片段。我们发现 rRNA 包含一种非典型的 5S 简化形式,以及 LSU 结构域 I 的一种排列。mt-5S rRNA 由 mL40 稳定,mL40 也存在于缺乏 5S 的线粒体核糖体中,这表明存在一种进化途径。通过与其他具有碎片化 rRNA 的核糖体进行比较,我们观察到这种模式在很大的进化距离和细胞区室之间共享,表明存在进化趋同,并支持原始碎片化核糖体的概念。在蛋白质水平上,十一个外围相关的 HEAT 重复蛋白参与 3' rRNA 末端的结合,结构特征是其中一个蛋白(mL116)的突出拟三聚物。最后,在出口隧道中,mL128 限制了前庭区域的隧道宽度,而 mL105,一种膜靶向组件的同源物,介导与膜结合插入酶的接触。总的来说,结构分析为线粒体核糖体机械的进化提供了深入的了解。