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5-氮杂胞苷对诺维科夫肝癌细胞核仁RNA及前核糖体颗粒的影响

Effects of 5-azacytidine on nucleolar RNA and the preribosomal particles in Novikoff hepatoma cells.

作者信息

Weiss J W, Pitot H C

出版信息

Biochemistry. 1975 Jan 28;14(2):316-26. doi: 10.1021/bi00673a018.

Abstract

Examination of nucleolar RNA from cultured Novikoff hepatoma cells treated for 3 hr with 5 x 10-4 M 5-azacytidine shows that significant amounts of analog-substituted 45S RNA are processed to the 32S RNA species, but 28S RNA formation is completely inhibited. Under these conditions of analog treatment 37% of the cytidine residues in the 45S RNA is replaced by 5-azacytidine. During coelectrophoresis of nucleolar RNA from 5-azacytidine-treated and control cells, the analog-substituted 45S RNA and 32S RNA display reduced mobilities compared to the control 45S RNA and 32S RNA. Coelectrophoresis of analog-substituted and control RNA after formaldehyde denaturation shows no differences in electrophoretic mobility between the two RNA samples, suggesting that 5-azacytidine incorporation may alter the secondary structure of the 45S RNA and the 32S RNA. 5-Azacytidine at 5 x 10-4 M severely inhibits protein synthesis in Novikoff cells by 3 hr. After this length of treatment, however, CsCl buoyant density analysis reveals no difference in density of either the 80S or 55S preribosomal ribonucleoprotein particles when compared to normal particles. Also 5-azacytidine treatment does not appear to cause major changes in the polyacrylamide gel electrophoresis patterns of the proteins in the 80S and 55S preribosomal particles. These results together with previous findings suggest that 5-azacytidine's inhibition of rRNA processing is possibly related to its alteration of the structure of the ribosomal precursor RNAs and is not a consequence of a general inhibition of ribosomal protein formation.

摘要

对用5×10⁻⁴M 5-氮杂胞苷处理3小时的培养诺维科夫肝癌细胞的核仁RNA进行检测,结果显示大量类似物取代的45S RNA被加工成32S RNA种类,但28S RNA的形成完全受到抑制。在这些类似物处理条件下,45S RNA中37%的胞苷残基被5-氮杂胞苷取代。在对5-氮杂胞苷处理细胞和对照细胞的核仁RNA进行共电泳时,与对照45S RNA和32S RNA相比,类似物取代的45S RNA和32S RNA迁移率降低。甲醛变性后类似物取代的RNA和对照RNA的共电泳显示,两个RNA样品的电泳迁移率没有差异,这表明5-氮杂胞苷的掺入可能改变了45S RNA和32S RNA的二级结构。5×10⁻⁴M的5-氮杂胞苷在3小时内严重抑制诺维科夫细胞中的蛋白质合成。然而,经过这段时间的处理后,氯化铯浮力密度分析显示,与正常颗粒相比,80S或55S前核糖体核糖核蛋白颗粒的密度没有差异。此外,5-氮杂胞苷处理似乎不会导致80S和55S前核糖体颗粒中蛋白质的聚丙烯酰胺凝胶电泳图谱发生重大变化。这些结果与先前的发现共同表明,5-氮杂胞苷对rRNA加工的抑制可能与其对核糖体前体RNA结构的改变有关,而不是核糖体蛋白形成普遍抑制的结果。

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