Madore S J, Wieben E D, Pederson T
J Cell Biol. 1984 Jan;98(1):188-92. doi: 10.1083/jcb.98.1.188.
We have investigated the intracellular site and posttranscriptional immediacy of U1 small nuclear RNA processing and ribonucleoprotein (RNP) assembly in HeLa cells. After 30 or 45 min of labeling with [3H]uridine, a large amount of U1-related RNA radioactivity in the cytoplasm was found by using either hypotonic or isotonic homogenization buffers. The pulse-labeled cytoplasmic U1 RNA was resolved as a ladder of closely spaced bands running just behind mature-size U1 (165 nucleotides) on RNA sequencing gels, corresponding to a series of molecules between one and at least eight nucleotides longer than mature U1. They were further identified as U1 RNA sequences by gel blot hybridization with cloned U1 DNA. The ladder of cytoplasmic U1 RNA bands reacted with both RNP and Sm autoimmune sera and with a monoclonal Sm antibody, indicating a cytoplasmic assembly of these U1 RNA-related molecules into complexes containing the same antigens as nuclear U1 RNP particles. The cytoplasmic molecules behave as precursors to mature nuclear U1 RNA in both pulse-chase and continuous labeling experiments. While not excluding earlier or subsequent nuclear stages, these results suggest that the cytoplasm is a site of significant U1 RNA processing and RNP assembly. This raises the possibility that nuclear-transcribed eucaryotic RNAs are always processed in the cell compartment other than that in which they ultimately function, which suggests a set of precise signals regulating RNA and ribonucleoprotein traffic between nucleus and cytoplasm.
我们研究了HeLa细胞中U1小核RNA加工及核糖核蛋白(RNP)组装的细胞内位点和转录后即时性。在用[3H]尿苷标记30或45分钟后,通过使用低渗或等渗匀浆缓冲液,在细胞质中发现了大量与U1相关的RNA放射性。脉冲标记的细胞质U1 RNA在RNA测序凝胶上被解析为一系列紧密间隔的条带,紧跟在成熟大小的U1(165个核苷酸)之后,对应于比成熟U1长1至至少8个核苷酸的一系列分子。通过与克隆的U1 DNA进行凝胶印迹杂交,它们被进一步鉴定为U1 RNA序列。细胞质U1 RNA条带的梯状结构与RNP和Sm自身免疫血清以及一种单克隆Sm抗体发生反应,表明这些与U1 RNA相关的分子在细胞质中组装成含有与核U1 RNP颗粒相同抗原的复合物。在脉冲追踪和连续标记实验中,细胞质分子都表现为成熟核U1 RNA的前体。虽然不排除更早或后续的核阶段,但这些结果表明细胞质是U1 RNA加工和RNP组装的重要位点。这增加了一种可能性,即核转录的真核RNA总是在其最终发挥功能的细胞区室之外的其他区室中进行加工,这暗示了一组精确的信号在调节RNA和核糖核蛋白在细胞核和细胞质之间的运输。