Laboratory of Genetics, University of Camerino, 62032 Camerino (MC), Italy.
Interfaculty Institute for Genetics and Functional Genomics, University Medicine Greifswald, Felix-Hausdorff-Str. 8, 17475 Greifswald, Germany.
Nucleic Acids Res. 2019 May 21;47(9):4652-4662. doi: 10.1093/nar/gkz188.
Cold-stress in Escherichia coli induces de novo synthesis of translation initiation factors IF1, IF2 and IF3 while ribosome synthesis and assembly slow down. Consequently, the IFs/ribosome stoichiometric ratio increases about 3-fold during the first hours of cold adaptation. The IF1 and IF3 increase plays a role in translation regulation at low temperature (cold-shock-induced translational bias) but so far no specific role could be attributed to the extra copies of IF2. In this work, we show that the extra-copies of IF2 made after cold stress are associated with immature ribosomal subunits together with at least another nine proteins involved in assembly and/or maturation of ribosomal subunits. This finding, coupled with evidence that IF2 is endowed with GTPase-associated chaperone activity that promotes refolding of denatured GFP, and the finding that two cold-sensitive IF2 mutations cause the accumulation of immature ribosomal particles, indicate that IF2 is yet another GTPase protein that participates in ribosome assembly/maturation, especially at low temperatures. Overall, these findings are instrumental in redefining the functional role of IF2, which cannot be regarded as being restricted to its well documented functions in translation initiation of bacterial mRNA.
在大肠杆菌中,冷应激诱导翻译起始因子 IF1、IF2 和 IF3 的从头合成,而核糖体的合成和组装速度减慢。因此,在适应低温的最初几个小时内,IFs/核糖体的比例增加了约 3 倍。IF1 和 IF3 的增加在低温下(冷休克诱导的翻译偏向)发挥了翻译调控作用,但到目前为止,还不能将额外的 IF2 拷贝归因于特定的作用。在这项工作中,我们表明冷应激后产生的额外 IF2 拷贝与不成熟的核糖体亚基以及至少另外 9 种参与核糖体亚基组装和/或成熟的蛋白质有关。这一发现,加上 IF2 具有 GTPase 相关伴侣活性,可促进 GFP 变性的重折叠的证据,以及两个冷敏感 IF2 突变导致不成熟核糖体颗粒积累的发现,表明 IF2 是另一种参与核糖体组装/成熟的 GTPase 蛋白,尤其是在低温下。总的来说,这些发现对于重新定义 IF2 的功能作用至关重要,IF2 的功能不能仅仅局限于其在细菌 mRNA 翻译起始中已被充分证明的作用。