Musci M A, Egeland D B, Schuler M A
Department of Plant Biology, University of Illinois, Urbana 61801.
Plant J. 1992 Jul;2(4):589-99. doi: 10.1046/j.1365-313x.1992.t01-28-00999.x.
To elucidate differences between the pre-mRNA splicing components in monocots and dicots, we have cloned and characterized several U1 and U2 snRNA sequence variants expressed in wheat seedling nuclei. Primer extension sequencing on wheat and pea snRNA populations has demonstrated that two 5'-terminal nucleotides found in most other U1 snRNAs are missing/modified in many plant U1 snRNAs. Comparison of the wheat U1 and U2 snRNA variants with their counterparts expressed in pea nuclei has defined regions of structural divergence between monocot and dicot U1 and U2 snRNAs. The U1 and U2 snRNA sequences involved in RNA:RNA interaction with pre-mRNAs are absolutely conserved. Significant differences occur between wheat and pea U1 snRNAs in stem I and II structures implicated in the binding of U1-specific proteins suggesting that the monocot and dicot U1-specific snRNP proteins differ in their binding specificities. Stem III structures, which are required in mammalian systems for splicing complex formation but not for U1-specific protein binding, differ more extensively than stems I, II, or IV. In U2 snRNAs, the sequence differences between these two species are primarily localized in stem III and in stem IV which has been implicated in snRNP protein binding. These differences suggest that monocot and dicot U1 and U2 snRNPs represent distinct entities that may have monocot- and dicot-specific snRNP protein variants associated with each snRNA.
为了阐明单子叶植物和双子叶植物前体mRNA剪接成分之间的差异,我们克隆并鉴定了在小麦幼苗细胞核中表达的几种U1和U2 snRNA序列变体。对小麦和豌豆snRNA群体进行引物延伸测序表明,在许多植物U1 snRNA中,大多数其他U1 snRNA中发现的两个5'-末端核苷酸缺失/修饰。将小麦U1和U2 snRNA变体与其在豌豆细胞核中表达的对应物进行比较,确定了单子叶植物和双子叶植物U1和U2 snRNA之间的结构差异区域。与前体mRNA发生RNA:RNA相互作用的U1和U2 snRNA序列是绝对保守的。小麦和豌豆U1 snRNA在与U1特异性蛋白结合有关的茎I和茎II结构上存在显著差异,这表明单子叶植物和双子叶植物U1特异性snRNP蛋白的结合特异性不同。茎III结构在哺乳动物系统中是剪接复合物形成所必需的,但不是U1特异性蛋白结合所必需的,其差异比茎I、茎II或茎IV更广泛。在U2 snRNA中,这两个物种之间的序列差异主要位于茎III和与snRNP蛋白结合有关的茎IV中。这些差异表明,单子叶植物和双子叶植物的U1和U2 snRNP代表不同的实体,可能有与每个snRNA相关的单子叶植物和双子叶植物特异性snRNP蛋白变体。