Berthold W, Lim L
Biochem J. 1976 Feb 15;154(2):529-39. doi: 10.1042/bj1540529.
The metabolism of high-molecular-weight RNA in the nuclear and cytoplasmic fractions of newborn and adult rat brain was investigated after the intracranial administration of [32P]Pi. In young brain, a considerable proportion of the newly synthesized radioactive RNA is transferred to the cytoplasm, in contrast with the adult brain, where there appears to be a high intranuclear turnover. Electrophoretic analysis of the newly synthesized RNA showed that processing of the rRNA precursor to yield the 28S and 18S rRNA may be more rapid in the adult than in the young, although most of the adult rRNA in the nucleus is not transferred to the cytoplasm. In young brain, processing is probably tightly coupled to transport of rRNA into the cytoplasm, so that 28S and 18S rRNA are not subjected to possible degradation within the nucleus. Polyadenylated RNA turns over in concert with high-molecular-weight RNA in the nuclei of the adult rat brain. In the cytoplasm the polyadenylated RNA has a higher turnover rate relative to rRNA. In the young brain the polyadenylated RNA is transferred to the cytoplasm along with rRNA, although polyadenylated RNA is transported into the cytoplasm at a faster rate. The nuclear and cytoplasmic polyadenylated RNA species of young brain are larger than their corresponding adult counterparts. These results suggest that there are considerable changes in the regulation of the nucleo-cytoplasmic relationship of rRNA and polyadenylated RNA during the transition of the brain from a developing replicative phase to an adult differentiated and non-dividing state.
在颅内注射[32P]磷酸后,研究了新生大鼠和成年大鼠脑细胞核和细胞质部分中高分子量RNA的代谢。与成年大脑相比,在幼龄大脑中,相当一部分新合成的放射性RNA会转移到细胞质中,而成年大脑中核内周转率似乎较高。对新合成RNA的电泳分析表明,与幼龄相比,成年大鼠产生28S和18S rRNA的rRNA前体加工过程可能更快,尽管细胞核中大多数成年rRNA不会转移到细胞质中。在幼龄大脑中,加工过程可能与rRNA向细胞质的转运紧密相关,因此28S和18S rRNA不会在细胞核内受到可能的降解。成年大鼠脑细胞核中的多聚腺苷酸化RNA与高分子量RNA同步周转。在细胞质中,多聚腺苷酸化RNA相对于rRNA具有更高的周转率。在幼龄大脑中,多聚腺苷酸化RNA与rRNA一起转移到细胞质中,尽管多聚腺苷酸化RNA以更快的速度转运到细胞质中。幼龄大脑的细胞核和细胞质多聚腺苷酸化RNA种类比相应的成年种类更大。这些结果表明,在大脑从发育复制阶段向成年分化和非分裂状态转变的过程中,rRNA和多聚腺苷酸化RNA的核质关系调节发生了相当大的变化。