Hartshorne T, Agabian N
Intercampus Program in Molecular Parasitology, School of Pharmacy, University of California, San Francisco 94143-1204.
Nucleic Acids Res. 1994 Aug 25;22(16):3354-64. doi: 10.1093/nar/22.16.3354.
U3 nucleolar small RNA (snRNA) is involved in early processing of the primary rRNA transcript. A secondary structure model for the unusually small Trypanosoma brucei U3 snRNA was deduced by chemical modification and enzymatic cleavage of U3 snRNA in deproteinized and ribonucleoprotein (RNP) forms. Comprehensive alignment of U3 snRNAs from vertebrate, plant, fungal and protozoan species clearly delineated conserved and divergent features. The 5' domain of the T. brucei U3 snRNA appears to form one small, flexible 5' stem loop structure followed by a long single-stranded region; this model is a variation on 5' domain structures proposed for other U3 snRNAs which do not conform to a single model. The 3' domain of T. brucei U3 snRNA contains four single-stranded sequences conserved between U3 snRNAs. Of these, structural probing determined that the configurations of GAU region and box B and C sequences are altered by protein interactions in U3 snRNP. Conspicuously, the 3' domains of trypanosomal U3 snRNAs lack stem loops II and III, indicating that these structures are not required for conserved U3 snRNA functions.
U3核仁小RNA(snRNA)参与初级rRNA转录本的早期加工。通过对脱蛋白和核糖核蛋白(RNP)形式的U3 snRNA进行化学修饰和酶切,推导出来自布氏锥虫的异常小的U3 snRNA的二级结构模型。对来自脊椎动物、植物、真菌和原生动物物种的U3 snRNA进行全面比对,清楚地勾勒出保守和不同的特征。布氏锥虫U3 snRNA的5'结构域似乎形成一个小的、灵活的5'茎环结构,后面跟着一个长的单链区域;该模型是为其他不符合单一模型的U3 snRNA提出的5'结构域结构的一种变体。布氏锥虫U3 snRNA的3'结构域包含U3 snRNA之间保守的四个单链序列。其中,结构探测确定GAU区域以及框B和C序列的构型在U3 snRNP中会因蛋白质相互作用而改变。值得注意的是,锥虫U3 snRNA的3'结构域缺乏茎环II和III,这表明这些结构对于保守的U3 snRNA功能并非必需。