Royal A, Simard R
J Cell Biol. 1975 Sep;66(3):577-85. doi: 10.1083/jcb.66.3.577.
A correlated autoradiographic and biochemical study of RNA synthesis in the nucleoli of chinese hamster ovary cells has been made. Quantitative analysis of the labeling indicates that the fibrillar ribonucleoprotein (RNP) component is labeled faster than 80S RNP and 45S RNA molecules, but approaches simultaneously a steady-state 3H to 14C ratio or grains/mum2 after 30 min of [3H]uridine incorporation. On the other hand, the 55S RNP, the 36S + 32S RNA, and the granular RNP components have the same kinetic of labeling with [3H]uridine. These results suggest that the fibrillar and granular RNP components of the nucleolus are the ultrastructural substratum of, respectively, the 80S RNP (45S RNA) and 55S RNP (36S + 32S RNA). The possibility that precursors to 80S RNP exist also in the fibrillar region of the nucleolus is strongly suggested by the rapid labeling of the fibrils on the autoradiographs.
对中国仓鼠卵巢细胞核仁中的RNA合成进行了放射自显影和生化相关研究。标记的定量分析表明,纤维状核糖核蛋白(RNP)成分比80S RNP和45S RNA分子标记得更快,但在掺入[3H]尿苷30分钟后,同时接近稳态的3H与14C比率或每平方微米的颗粒数。另一方面,55S RNP、36S + 32S RNA和颗粒状RNP成分用[3H]尿苷标记的动力学相同。这些结果表明,核仁的纤维状和颗粒状RNP成分分别是80S RNP(45S RNA)和55S RNP(36S + 32S RNA)的超微结构基础。放射自显影片上纤维的快速标记强烈提示80S RNP的前体也存在于核仁的纤维区域。