Schmidt Christian, Becker Thomas, Heuer André, Braunger Katharina, Shanmuganathan Vivekanandan, Pech Markus, Berninghausen Otto, Wilson Daniel N, Beckmann Roland
Gene Center, Department of Biochemistry and Center for integrated Protein Science Munich (CiPSM), Ludwig-Maximilians-Universität München, Feodor-Lynen-Strasse 25, 81377 Munich, Germany.
Gene Center, Department of Biochemistry and Center for integrated Protein Science Munich (CiPSM), Ludwig-Maximilians-Universität München, Feodor-Lynen-Strasse 25, 81377 Munich, Germany
Nucleic Acids Res. 2016 Feb 29;44(4):1944-51. doi: 10.1093/nar/gkv1517. Epub 2015 Dec 28.
During protein synthesis, ribosomes become stalled on polyproline-containing sequences, unless they are rescued in archaea and eukaryotes by the initiation factor 5A (a/eIF-5A) and in bacteria by the homologous protein EF-P. While a structure of EF-P bound to the 70S ribosome exists, structural insight into eIF-5A on the 80S ribosome has been lacking. Here we present a cryo-electron microscopy reconstruction of eIF-5A bound to the yeast 80S ribosome at 3.9 Å resolution. The structure reveals that the unique and functionally essential post-translational hypusine modification reaches toward the peptidyltransferase center of the ribosome, where the hypusine moiety contacts A76 of the CCA-end of the P-site tRNA. These findings would support a model whereby eIF-5A stimulates peptide bond formation on polyproline-stalled ribosomes by stabilizing and orienting the CCA-end of the P-tRNA, rather than by directly contributing to the catalysis.
在蛋白质合成过程中,核糖体在含有多聚脯氨酸的序列上会停滞不前,除非在古细菌和真核生物中被起始因子5A(a/eIF-5A)拯救,在细菌中被同源蛋白EF-P拯救。虽然存在与70S核糖体结合的EF-P的结构,但对于80S核糖体上的eIF-5A的结构了解一直欠缺。在此,我们展示了以3.9 Å分辨率对与酵母80S核糖体结合的eIF-5A进行的冷冻电子显微镜重建。该结构揭示,独特且在功能上必不可少的翻译后hypusine修饰朝向核糖体的肽基转移酶中心,其中hypusine部分与P位点tRNA的CCA末端的A76接触。这些发现将支持一种模型,即eIF-5A通过稳定并定向P-tRNA的CCA末端来刺激多聚脯氨酸停滞核糖体上的肽键形成,而不是直接参与催化作用。