Chappell S A, Edelman G M, Mauro V P
Department of Neurobiology, Scripps Research Institute and Skaggs Institute for Chemical Biology, 10550 North Torrey Pines Road, La Jolla, CA 92037, USA.
Proc Natl Acad Sci U S A. 2000 Feb 15;97(4):1536-41. doi: 10.1073/pnas.97.4.1536.
This study addresses the properties of a newly identified internal ribosome entry site (IRES) contained within the mRNA of the homeodomain protein Gtx. Sequential deletions of the 5' untranslated region (UTR) from either end did not define distinct IRES boundaries; when five nonoverlapping UTR fragments were tested, four had IRES activity. These observations are consistent with other cellular IRES analyses suggesting that some cellular IRESes are composed of segments (IRES modules) that independently and combinatorially contribute to overall IRES activity. We characterize a 9-nt IRES module from the Gtx 5' UTR that is 100% complementary to the 18S rRNA at nucleotides 1132-1124. In previous work, we demonstrated that this mRNA segment could be crosslinked to its complement within intact 40S subunits. Here we show that increasing the number of copies of this IRES module in the intercistronic region of a dicistronic mRNA strongly enhances IRES activity in various cell lines. Ten linked copies increased IRES activity up to 570-fold in Neuro 2a cells. This level of IRES activity is up to 63-fold greater than that obtained by using the well characterized encephalomyocarditis virus IRES when tested in the same assay system. When the number of nucleotides between two of the 9-nt Gtx IRES modules was increased, the synergy between them decreased. In light of these findings, we discuss possible mechanisms of ribosome recruitment by cellular mRNAs, address the proposed role of higher order RNA structures on cellular IRES activity, and suggest parallels between IRES modules and transcriptional enhancer elements.
本研究探讨了同源结构域蛋白Gtx的mRNA中所含新鉴定的内部核糖体进入位点(IRES)的特性。从两端对5'非翻译区(UTR)进行连续缺失并未确定明确的IRES边界;当测试五个不重叠的UTR片段时,其中四个具有IRES活性。这些观察结果与其他细胞IRES分析一致,表明一些细胞IRES由独立且组合地对整体IRES活性有贡献的片段(IRES模块)组成。我们从Gtx 5'UTR中鉴定出一个9个核苷酸的IRES模块,它在核苷酸1132 - 1124处与18S rRNA 100%互补。在之前的工作中,我们证明了该mRNA片段可以在完整的40S亚基内与其互补序列交联。在此我们表明,增加该IRES模块在双顺反子mRNA的顺反子间区域中的拷贝数,能强烈增强其在各种细胞系中的IRES活性。在Neuro 2a细胞中,十个相连的拷贝可使IRES活性提高多达570倍。在相同的检测系统中进行测试时,这种IRES活性水平比使用特征明确的脑心肌炎病毒IRES所获得的活性高出多达63倍。当9个核苷酸的Gtx IRES模块中的两个之间的核苷酸数量增加时,它们之间的协同作用会降低。鉴于这些发现,我们讨论了细胞mRNA招募核糖体的可能机制,探讨了高阶RNA结构对细胞IRES活性的假定作用,并提出了IRES模块与转录增强子元件之间的相似之处。