Bulygin Konstantin N, Timofeev Ivan O, Malygin Alexey A, Graifer Dmitri M, Meschaninova Maria I, Venyaminova Alya G, Krumkacheva Olesya A, Fedin Matvey V, Yu Frolova Ludmila, Karpova Galina G, Bagryanskaya Elena G
Institute of Chemical Biology and Fundamental Medicine SB RAS, pr. Lavrentjeva 8, Novosibirsk 630090, Russia.
International Tomography Center SB RAS, Institutskaya Str. 3a, Novosibirsk 630090, Russia.
Comput Struct Biotechnol J. 2021 Aug 19;19:4702-4710. doi: 10.1016/j.csbj.2021.08.024. eCollection 2021.
The conformation of mRNA in the region of the human 80S ribosome decoding site was monitored using 11-mer mRNA analogues that bore nitroxide spin labels attached to the terminal nucleotide bases. Intramolecular spin-spin distances were measured by DEER/PELDOR spectroscopy in model complexes mimicking different states of the 80S ribosome during elongation and termination of translation. The measurements revealed that in all studied complexes, mRNA exists in two alternative conformations, whose ratios are different in post-translocation, pre-translocation and termination complexes. We found that the presence of a tRNA molecule at the ribosomal A site decreases the relative share of the more extended mRNA conformation, whereas the binding of eRF1 (alone or in a complex with eRF3) results in the opposite effect. In the termination complexes, the ratios of mRNA conformations are practically the same, indicating that a part of mRNA bound in the ribosome channel does not undergo significant structural alterations in the course of completion of the translation. Our results contribute to the understanding of mRNA molecular dynamics in the mammalian ribosome channel during translation.
使用与末端核苷酸碱基相连的氮氧化物自旋标记的11聚体mRNA类似物,监测人80S核糖体解码位点区域内mRNA的构象。在模拟翻译延伸和终止过程中80S核糖体不同状态的模型复合物中,通过双电子-电子共振/脉冲电子双共振光谱法测量分子内自旋-自旋距离。测量结果表明,在所有研究的复合物中,mRNA以两种交替构象存在,其比例在易位后、易位前和终止复合物中有所不同。我们发现,核糖体A位点存在tRNA分子会降低更伸展的mRNA构象的相对比例,而eRF1(单独或与eRF3形成复合物)的结合则产生相反的效果。在终止复合物中,mRNA构象的比例实际上是相同的,这表明结合在核糖体通道中的一部分mRNA在翻译完成过程中不会发生显著的结构改变。我们的结果有助于理解哺乳动物核糖体通道中翻译过程中mRNA的分子动力学。