Pilipenko E V, Pestova T V, Kolupaeva V G, Khitrina E V, Poperechnaya A N, Agol V I, Hellen C U
Institute of Poliomyelitis and Viral Encephalitides, Russian Academy of Medical Sciences, Moscow 142782, Russia.
Genes Dev. 2000 Aug 15;14(16):2028-45.
Cap-independent translation initiation on picornavirus mRNAs is mediated by an internal ribosomal entry site (IRES) in the 5' untranslated region (5' UTR) and requires both eukaryotic initiation factors (eIFs) and IRES-specific cellular trans-acting factors (ITAFs). We show here that the requirements for trans-acting factors differ between related picornavirus IRESs and can account for cell type-specific differences in IRES function. The neurovirulence of Theiler's murine encephalomyelitis virus (TMEV; GDVII strain) was completely attenuated by substituting its IRES by that of foot-and-mouth disease virus (FMDV). Reconstitution of initiation using fully fractionated translation components indicated that 48S complex formation on both IRESs requires eIF2, eIF3, eIF4A, eIF4B, eIF4F, and the pyrimidine tract-binding protein (PTB) but that the FMDV IRES additionally requires ITAF(45), also known as murine proliferation-associated protein (Mpp1), a proliferation-dependent protein that is not expressed in murine brain cells. ITAF(45) did not influence assembly of 48S complexes on the TMEV IRES. Specific binding sites for ITAF(45), PTB, and a complex of the eIF4G and eIF4A subunits of eIF4F were mapped onto the FMDV IRES, and the cooperative function of PTB and ITAF(45) in promoting stable binding of eIF4G/4A to the IRES was characterized by chemical and enzymatic footprinting. Our data indicate that PTB and ITAF(45) act as RNA chaperones that control the functional state of a particular IRES and that their cell-specific distribution may constitute a basis for cell-specific translational control of certain mRNAs.
微小核糖核酸病毒信使核糖核酸(mRNA)上的不依赖帽结构的翻译起始由5'非翻译区(5'UTR)中的内部核糖体进入位点(IRES)介导,并且需要真核起始因子(eIFs)和IRES特异性细胞反式作用因子(ITAFs)。我们在此表明,相关微小核糖核酸病毒IRES对反式作用因子的需求有所不同,这可以解释IRES功能在细胞类型上的特异性差异。通过用口蹄疫病毒(FMDV)的IRES替换其IRES,泰勒氏鼠脑脊髓炎病毒(TMEV;GDVII株)的神经毒力完全减弱。使用完全分级分离的翻译组分进行起始重建表明,两种IRES上48S复合物的形成都需要eIF2、eIF3、eIF4A、eIF4B、eIF4F和嘧啶束结合蛋白(PTB),但FMDV IRES还需要ITAF(45),也称为鼠增殖相关蛋白(Mpp1),一种在鼠脑细胞中不表达的增殖依赖性蛋白。ITAF(45)不影响48S复合物在TMEV IRES上的组装。ITAF(45)、PTB以及eIF4F的eIF4G和eIF4A亚基复合物的特异性结合位点被定位到FMDV IRES上,并且通过化学和酶足迹法表征了PTB和ITAF(45)在促进eIF4G/4A与IRES稳定结合中的协同功能。我们的数据表明,PTB和ITAF(45)作为RNA伴侣控制特定IRES的功能状态,并且它们在细胞中的特异性分布可能构成某些mRNA细胞特异性翻译控制的基础。