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A search for structurally similar cellular internal ribosome entry sites

机译:寻找结构相似的细胞内部核糖体进入位点

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摘要

Internal ribosome entry sites (IRES) allow ribosomes to be recruited to mRNA in a cap-independent manner. Some viruses that impair cap-dependent translation initiation utilize IRES to ensure that the viral RNA will efficiently compete for the translation machinery. IRES are also employed for the translation of a subset of cellular messages during conditions that inhibit cap-dependent translation initiation. IRES from viruses like Hepatitis C and Classical Swine Fever virus share a similar structure/function without sharing primary sequence similarity. Of the cellular IRES structures derived so far, none were shown to share an overall structural similarity. Therefore, we undertook a genome-wide search of human 5′UTRs (untranslated regions) with an empirically derived structure of the IRES from the key inhibitor of apoptosis, X-linked inhibitor of apoptosis protein (XIAP), to identify novel IRES that share structure/function similarity. Three of the top matches identified by this search that exhibit IRES activity are the 5′UTRs of Aquaporin 4, ELG1 and NF-kappaB repressing factor (NRF). The structures of AQP4 and ELG1 IRES have limited similarity to the XIAP IRES; however, they share trans-acting factors that bind the XIAP IRES. We therefore propose that cellular IRES are not defined by overall structure, as viral IRES, but are instead dependent upon short motifs and trans-acting factors for their function.
机译:内部核糖体进入位点(IRES)允许核糖体以不依赖帽的方式募集到mRNA。某些会损害瓶盖依赖性翻译起始的病毒会利用IRES来确保病毒RNA将有效竞争翻译机制。 IRES还用于在抑制上限依赖性翻译起始的条件下翻译细胞信息的子集。来自丙型肝炎病毒和经典猪瘟病毒的病毒的IRES具有相似的结构/功能,而没有一级序列的相似性。到目前为止,在细胞的IRES结构中,没有一个显示出整体的结构相似性。因此,我们对人5'UTR(非翻译区)进行了全基因组搜索,其具有经验性的IRES结构,该结构来自凋亡的关键抑制剂X连锁的凋亡蛋白抑制剂(XIAP),以鉴定共享结构/功能相似。通过该搜索确定的展现出IRES活性的最重要的三个匹配是水通道蛋白4,ELG1和NF-κB阻遏因子(NRF)的5'UTR。 AQP4和ELG1 IRES的结构与XIAP IRES的相似性有限。但是,它们共享与XIAP IRES结合的反式作用因子。因此,我们提出细胞IRES不像病毒IRES那样由整体结构来定义,而是取决于短基序和反式作用因子的功能。

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