Barrett P, Kloetzel P M, Sommerville J
Biochim Biophys Acta. 1983 Sep 9;740(4):347-54. doi: 10.1016/0167-4781(83)90081-7.
During early oogenesis in amphibia, most of the 5 S RNA and tRNA is stored in a ribonucleoprotein particle that sediments at 42 S. In Xenopus laevis the 42 S particle contains two major proteins: of Mr 48 000 (P48) and 43 000 (P43). It is shown that heterogeneity in composition of the 42 S particle reflects a changing situation whereby initially, both 5 S RNA and tRNA are complexed with P48 (1 molecule 5 S RNA: 1 molecule P48; 2 or 3 molecules tRNA: 1 molecule P48), but later, tRNA becomes increasingly associated with P43 (in a 1:1 ratio) although 5 S RNA remains complexed with a cleavage product of P48. These changes relate to the eventual utilization of the excess 5 S RNA and tRNA in ribosome assembly and protein synthesis.
在两栖动物早期卵子发生过程中,大部分5S RNA和tRNA存储在沉降系数为42S的核糖核蛋白颗粒中。在非洲爪蟾中,42S颗粒包含两种主要蛋白质:分子量分别为48000(P48)和43000(P43)。研究表明,42S颗粒组成的异质性反映了一种不断变化的情况,即最初,5S RNA和tRNA都与P48复合(1分子5S RNA:1分子P48;2或3分子tRNA:1分子P48),但后来,tRNA越来越多地与P43结合(以1:1的比例),尽管5S RNA仍与P48的一个裂解产物复合。这些变化与核糖体组装和蛋白质合成中过量5S RNA和tRNA的最终利用有关。