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由内部核糖体进入位点赋予的编码c-myc、BiP和eIF4G的天然mRNA的不依赖帽结构的多核糖体结合。

Cap-independent polysomal association of natural mRNAs encoding c-myc, BiP, and eIF4G conferred by internal ribosome entry sites.

作者信息

Johannes G, Sarnow P

机构信息

Department of Microbiology and Immunology, Stanford University School of Medicine, California 94305, USA.

出版信息

RNA. 1998 Dec;4(12):1500-13. doi: 10.1017/s1355838298981080.

Abstract

Sequence elements that can function as internal ribosome entry sites (IRES) have been identified in 5' noncoding regions of certain uncapped viral and capped cellular mRNA molecules. However, it has remained largely unknown whether IRES elements are functional when located in their natural capped mRNAs. Therefore, the polysomal association and translation of several IRES-containing cellular mRNAs was tested under conditions that severely inhibited cap-dependent translation, that is, after infection with poliovirus. It was found that several known IRES-containing mRNAs, such as BiP and c-myc, were both associated with the translation apparatus and translated in infected cells when cap-dependent translation of most host-cell mRNAs was blocked, indicating that the IRES elements were functional in their natural mRNAs. Curiously, the mRNAs that encode eukaryotic initiation factor 4GI (eIF4GI) and 4GII (eIF4GII), two proteins with high identity and similar functions in the initiation of cap-dependent translation, were both associated with polysomes in infected cells. The 5'-end sequences of eIF4GI mRNA were isolated from a cDNA expression library and shown to function as an internal ribosome entry site when placed into a dicistronic mRNA. These findings suggest that eIF4G proteins can be synthesized at times when 5' cap-dependent mRNA translation is blocked, supporting the notion that eIF4G proteins are needed in both 5' cap-independent and 5' cap-dependent translational initiation mechanisms.

摘要

在某些无帽病毒和有帽细胞mRNA分子的5'非编码区中,已鉴定出可作为内部核糖体进入位点(IRES)发挥作用的序列元件。然而,IRES元件位于其天然有帽mRNA中时是否具有功能,在很大程度上仍不清楚。因此,在严重抑制帽依赖性翻译的条件下,即脊髓灰质炎病毒感染后,测试了几种含IRES的细胞mRNA的多核糖体结合和翻译情况。结果发现,当大多数宿主细胞mRNA的帽依赖性翻译被阻断时,几种已知的含IRES的mRNA,如BiP和c-myc,在感染细胞中既与翻译装置结合又进行翻译,这表明IRES元件在其天然mRNA中具有功能。奇怪的是,编码真核起始因子4GI(eIF4GI)和4GII(eIF4GII)的mRNA,这两种蛋白在帽依赖性翻译起始过程中具有高度同源性和相似功能,在感染细胞中均与多核糖体结合。从cDNA表达文库中分离出eIF4GI mRNA的5'端序列,并将其置于双顺反子mRNA中时,显示其可作为内部核糖体进入位点发挥作用。这些发现表明,在5'帽依赖性mRNA翻译受阻时,仍可合成eIF4G蛋白,这支持了eIF4G蛋白在5'帽非依赖性和5'帽依赖性翻译起始机制中均需存在的观点。

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