Department of Chemistry and Biochemistry, University of California San Diego, 9500 Gilman Drive, La Jolla, CA 92093-0314, USA.
J Mol Biol. 2013 Oct 23;425(20):3778-89. doi: 10.1016/j.jmb.2013.02.038. Epub 2013 Mar 27.
Accurate tRNA selection by the ribosome is essential for the synthesis of functional proteins. Previous structural studies indicated that the ribosome distinguishes between cognate and near-cognate tRNAs by monitoring the geometry of the codon-anticodon helix in the decoding center using the universally conserved 16S ribosomal RNA bases G530, A1492 and A1493. These bases form hydrogen bonds with the 2'-hydroxyl groups of the codon-anticodon helix, which are expected to be disrupted with a near-cognate codon-anticodon helix. However, a recent structural study showed that G530, A1492 and A1493 form hydrogen bonds in a manner identical with that of both cognate and near-cognate codon-anticodon helices. To understand how the ribosome discriminates between cognate and near-cognate tRNAs, we made 2'-deoxynucleotide and 2'-fluoro substituted mRNAs, which disrupt the hydrogen bonds between the A site codon and G530, A1492 and A1493. Our results show that multiple 2'-deoxynucleotide substitutions in the mRNA substantially inhibit tRNA selection, whereas multiple 2'-fluoro substitutions in the mRNA have only modest effects on tRNA selection. Furthermore, the miscoding antibiotics paromomycin and streptomycin rescue the defects in tRNA selection with the multiple 2'-deoxynucleotide substituted mRNA. These results suggest that steric complementarity in the decoding center is more important than the hydrogen bonds between the A site codon and G530, A1492 and A1493 for tRNA selection.
核糖体对 tRNA 的准确选择对于功能性蛋白质的合成至关重要。先前的结构研究表明,核糖体通过使用普遍保守的 16S 核糖体 RNA 碱基 G530、A1492 和 A1493 监测密码子-反密码子螺旋在解码中心的几何形状,来区分同源和近同源 tRNA。这些碱基与密码子-反密码子螺旋的 2'-羟基形成氢键,预计与近同源密码子-反密码子螺旋的氢键会被破坏。然而,最近的一项结构研究表明,G530、A1492 和 A1493 以与同源和近同源密码子-反密码子螺旋相同的方式形成氢键。为了了解核糖体如何区分同源和近同源 tRNA,我们构建了 2'-脱氧核苷酸和 2'-氟取代的 mRNA,这些 mRNA 破坏了 A 位密码子与 G530、A1492 和 A1493 之间的氢键。我们的结果表明,mRNA 中的多个 2'-脱氧核苷酸取代会显著抑制 tRNA 的选择,而 mRNA 中的多个 2'-氟取代对 tRNA 的选择只有适度的影响。此外,错配抗生素巴龙霉素和链霉素可以挽救具有多个 2'-脱氧核苷酸取代的 mRNA 中 tRNA 选择的缺陷。这些结果表明,在解码中心,立体互补性比 A 位密码子与 G530、A1492 和 A1493 之间的氢键对于 tRNA 的选择更为重要。