Wieben E D, Nenninger J M, Pederson T
J Mol Biol. 1985 May 5;183(1):69-78. doi: 10.1016/0022-2836(85)90281-5.
Biosynthetic precursors of U2 small nuclear RNA have been identified in cultured human cells by hybrid-selection of pulse-labeled RNA with cloned U2 DNA. These precursor molecules are one to approximately 16 nucleotides longer than mature U2 RNA and contain 2,2,7-trimethylguanosine "caps". The U2 RNA precursors are associated with proteins that react with a monoclonal antibody for antigens characteristic of small nuclear ribonucleoprotein particles. Like previously described precursors of U1 and U4 small nuclear RNAs, the pre-U2 RNAs are recovered in cytoplasmic fractions, although it is not known if this is their location in vivo. The precursors are processed to mature-size U2 RNA when cytoplasmic extracts are incubated in vitro at 37 degrees C. Mg2+ is required but ATP is not. The ribonucleoprotein structure of the pre-U2 RNA is maintained during the processing reaction in vitro, as are the 2,2,7-trimethylguanosine caps. The ribonucleoprotein organization is of major importance, as exogenous, protein-free U2 RNA precursors are degraded rapidly in the in vitro system. Two lines of evidence indicate that the conversion of U2 precursors to mature-size U2 RNA involves a 3' processing reaction. First, the reaction is unaffected by a large excess of mature U2 small nuclear RNP, whose 5' trimethylguanosine caps would be expected to compete for a 5' processing activity. Second, when pre-U2 RNA precursors are first stoichiometrically decorated with an antibody specific for 2,2,7-trimethylguanosine, the extent of subsequent processing in vitro is unaffected. These results provide the first demonstration of a eukaryotic RNA processing reaction in vitro occurring within a ribonucleoprotein particle.
通过用克隆的U2 DNA对脉冲标记的RNA进行杂交选择,已在培养的人细胞中鉴定出U2小核RNA的生物合成前体。这些前体分子比成熟的U2 RNA长1至约16个核苷酸,并含有2,2,7 - 三甲基鸟苷“帽”。U2 RNA前体与能与针对小核核糖核蛋白颗粒特征性抗原的单克隆抗体发生反应的蛋白质相关。与先前描述的U1和U4小核RNA前体一样,U2前体RNA在细胞质组分中被回收,尽管尚不清楚这是否是它们在体内的位置。当细胞质提取物在37℃体外孵育时,前体被加工成成熟大小的U2 RNA。需要Mg2 + 但不需要ATP。在体外加工反应过程中,U2前体RNA的核糖核蛋白结构以及2,2,7 - 三甲基鸟苷帽得以保留。核糖核蛋白的组织至关重要,因为外源的、无蛋白质U2 RNA前体在体外系统中会迅速降解。有两条证据表明U2前体向成熟大小U2 RNA的转化涉及3'加工反应。首先,该反应不受大量过量的成熟U2小核核糖核蛋白的影响,预计其5'三甲基鸟苷帽会竞争5'加工活性。其次,当U2 RNA前体首先用对2,2,7 - 三甲基鸟苷特异的抗体进行化学计量修饰时,随后体外加工的程度不受影响。这些结果首次证明了在核糖核蛋白颗粒内发生的真核RNA体外加工反应。