Miller L
J Cell Biol. 1973 Dec;59(3):624-32. doi: 10.1083/jcb.59.3.624.
Ribosomes of all eukaryotes contain a single molecule of 5S, 18S, and 28S RNA. In the frog Xenopus laevis the genes which code for 18S and 28S RNA are located in the nucleolar organizer, but these genes are not linked to the 5S RNA genes. Therefore the synthesis of the three ribosomal RNAs provides a model system for studying interchromosomal aspects of gene regulation. In order to determine if the synthesis of the three ribosomal RNAs are interdependent, the relative rate of 5S RNA synthesis was measured in anucleolate mutants (o/o), which do not synthesize any 18S or 28S RNA, and in partial nucleolate mutants (p(l-1)/o), which synthesize 18S and 28S RNA at 25% of the normal rate. Since the o/o and p(l-1)/o mutants have a complete and partial deletion of 18S and 28S RNA genes respectively, but the normal number of 5S RNA genes, they provide a unique system in which to study the dependence of 5S RNA synthesis on the synthesis of 18S and 28S RNA. Total RNA was extracted from embryos labeled during different stages of development and analyzed by polyacrylamide gel electrophoresis. Quite unexpectedly it was found that 5S RNA synthesis in o/o and p(l-1)/o mutants proceeds at the same rate as it does in normal embryos. Furthermore, 5S RNA synthesis is initiated normally at gastrulation in o/o mutants in the complete absence of 18S and 28S RNA synthesis.
所有真核生物的核糖体都包含一个5S、18S和28S RNA分子。在非洲爪蟾中,编码18S和28S RNA的基因位于核仁组织区,但这些基因与5S RNA基因不相连。因此,三种核糖体RNA的合成提供了一个研究基因调控染色体间方面的模型系统。为了确定三种核糖体RNA的合成是否相互依赖,在无核仁突变体(o/o)和部分核仁突变体(p(l-1)/o)中测量了5S RNA合成的相对速率,无核仁突变体不合成任何18S或28S RNA,部分核仁突变体以正常速率的25%合成18S和28S RNA。由于o/o和p(l-1)/o突变体分别完全和部分缺失18S和28S RNA基因,但5S RNA基因数量正常,它们提供了一个独特的系统来研究5S RNA合成对18S和28S RNA合成的依赖性。从发育不同阶段标记的胚胎中提取总RNA,并通过聚丙烯酰胺凝胶电泳进行分析。非常出乎意料的是,发现o/o和p(l-1)/o突变体中5S RNA的合成速率与正常胚胎中的相同。此外,在完全没有18S和28S RNA合成的情况下,o/o突变体在原肠胚形成时5S RNA合成正常启动。