Gilbert Wendy V, Zhou Kaihong, Butler Tamira K, Doudna Jennifer A
Department of Molecular and Cell Biology, Department of Chemistry, and Howard Hughes Medical Institute, University of California, Berkeley, CA 94720, USA.
Science. 2007 Aug 31;317(5842):1224-7. doi: 10.1126/science.1144467.
Cellular internal ribosome entry sites (IRESs) are untranslated segments of mRNA transcripts thought to initiate protein synthesis in response to environmental stresses that prevent canonical 5' cap-dependent translation. Although numerous cellular mRNAs are proposed to have IRESs, none has a demonstrated physiological function or molecular mechanism. Here we show that seven yeast genes required for invasive growth, a developmental pathway induced by nutrient limitation, contain potent IRESs that require the initiation factor eIF4G for cap-independent translation. In contrast to the RNA structure-based activity of viral IRESs, we show that an unstructured A-rich element mediates internal initiation via recruitment of the poly(A) binding protein (Pab1) to the 5' untranslated region (UTR) of invasive growth messages. A 5'UTR mutation that impairs IRES activity compromises invasive growth, which indicates that cap-independent translation is required for physiological adaptation to stress.
细胞内核糖体进入位点(IRES)是mRNA转录本的非翻译片段,被认为可在阻止经典5'帽依赖性翻译的环境应激反应中启动蛋白质合成。尽管许多细胞mRNA被认为具有IRES,但尚无一个具有已证实的生理功能或分子机制。在此我们表明,侵袭性生长(一种由营养限制诱导的发育途径)所需的七个酵母基因含有有效的IRES,这些IRES需要起始因子eIF4G进行不依赖帽的翻译。与病毒IRES基于RNA结构的活性相反,我们表明一个无结构的富含A的元件通过将聚腺苷酸结合蛋白(Pab1)募集到侵袭性生长信息的5'非翻译区(UTR)来介导内部起始。损害IRES活性的5'UTR突变会损害侵袭性生长,这表明不依赖帽的翻译是生理适应应激所必需的。