Chabanon H, Nury D, Mickleburgh I, Burtle B, Hesketh J
Institute of Cellular and Molecular Biosciences, University of Newcastle, Newcastle upon Tyne NE1 7RU, UK.
Biochem Soc Trans. 2004 Nov;32(Pt 5):702-4. doi: 10.1042/BST0320702.
Subcellular localization of mRNAs is a key mechanism for the synthesis of proteins close to their site of function. The mRNA encoding MT-1 (metallothionein-1) is localized in the perinuclear cytoplasm, where it is associated with cytoskeletal-bound polysomes. This localization relies on sequences present in the 3'-UTR (3'-untranslated region). The present study aims to characterize the cis-acting localization element(s) within the 3'-UTR. Using transfected cells expressing tagged MT-1 differing in their 3'-UTRs (deleted or mutated), the section(s) of this region required for directing MT-1 transcripts to the perinuclear cytoplasm has been investigated. Different 3'-UTRs were also used in UV cross-linking experiments that highlighted two distinct regions (nt 26-30 and 66-76) necessary for the binding of a protein of approx. 50 kDa, presumably involved in the mRNA targeting. The poor sequence homology between the MT-1 3'-UTR of various species, together with the bipartite nature of the required cis-element, indicates the involvement of a particular structure in the localization signal. The secondary structure of the MT-1 3'-UTR was investigated using enzymic and chemical probing. Current structural analysis of mutant 3'-UTRs will allow the critical structural features of the MT-1 mRNA perinuclear localization signal to be defined.
mRNA的亚细胞定位是在其功能位点附近合成蛋白质的关键机制。编码MT-1(金属硫蛋白-1)的mRNA定位于核周细胞质中,在那里它与细胞骨架结合的多核糖体相关联。这种定位依赖于3'-UTR(3'-非翻译区)中存在的序列。本研究旨在表征3'-UTR内的顺式作用定位元件。使用表达其3'-UTR不同(缺失或突变)的标记MT-1的转染细胞,研究了将MT-1转录本导向核周细胞质所需的该区域的片段。不同的3'-UTR也用于紫外线交联实验,该实验突出了两个不同的区域(核苷酸26 - 30和66 - 76),这两个区域是一种约50 kDa的蛋白质结合所必需的,该蛋白质可能参与mRNA靶向。不同物种的MT-1 3'-UTR之间较差的序列同源性,以及所需顺式元件的二分性质,表明特定结构参与了定位信号。使用酶促和化学探针研究了MT-1 3'-UTR的二级结构。对突变3'-UTR的当前结构分析将有助于确定MT-1 mRNA核周定位信号的关键结构特征。