Circle David A, Lyons Alita J, Neel Olivia D, Robertson Hugh D
Department of Biochemistry, Cornell University Medical College, New York, New York 10021, USA.
RNA. 2003 Mar;9(3):280-6. doi: 10.1261/rna.2173903.
Elements of local tertiary structure in RNA molecules are important in understanding structure-function relationships. The loop E motif, first identified in several eukaryotic RNAs at functional sites which share an exceptional propensity for UV crosslinking between specific bases, was subsequently shown to have a characteristic tertiary structure. Common sequences and secondary structures have allowed other examples of the E-loop motif to be recognized in a number of RNAs at sites of protein binding or other biological function. We would like to know if more elements of local tertiary structure, in addition to the E-loop, can be identified by such common features. The highly structured circular RNA genome of the hepatitis D virus (HDV) provides an ideal test molecule because it has extensive internal structure, a UV-crosslinkable tertiary element, and specific sites for functional interactions with proteins including host PKR. We have now found a UV-crosslinkable element of local tertiary structure in antigenomic HDV RNA which, although differing from the E-loop, has a very similar pattern of sequence and secondary structure to the UV-crosslinkable element found in the genomic strand. Despite the fact that the two structures map close to one another, the sequences comprising them are not the templates for each other. Instead, the template regions for each element are additional sites for potential higher order structure on their respective complementary strands. This wealth of recurring sequences interspersed with base-paired stems provides a context to examine other RNA species for such features and their correlations with biological function.
RNA分子中局部三级结构的元件对于理解结构-功能关系很重要。环E基序最初是在几种真核RNA的功能位点中发现的,这些位点在特定碱基之间具有异常高的紫外线交联倾向,随后被证明具有特征性的三级结构。共同的序列和二级结构使得在许多RNA的蛋白质结合位点或其他生物学功能位点上能够识别出E环基序的其他例子。我们想知道,除了E环之外,是否可以通过这些共同特征识别出更多局部三级结构的元件。丁型肝炎病毒(HDV)高度结构化的环状RNA基因组提供了一个理想的测试分子,因为它具有广泛的内部结构、一个可紫外线交联的三级元件以及与包括宿主PKR在内的蛋白质进行功能相互作用的特定位点。我们现在在HDV反基因组RNA中发现了一个局部三级结构的可紫外线交联元件,尽管它与E环不同,但其序列和二级结构模式与在基因组链中发现的可紫外线交联元件非常相似。尽管这两种结构彼此位置相近,但构成它们的序列并非彼此的模板。相反,每个元件的模板区域是其各自互补链上潜在更高阶结构的额外位点。这种大量重复序列与碱基配对茎的穿插排列为研究其他RNA物种的此类特征及其与生物学功能的相关性提供了背景。