首页> 美国卫生研究院文献>Nucleic Acids Research >The 3-terminal primary structure of five eukaryotic 18S rRNAs determined by the direct chemical method of sequencing. The highly conserved sequences include an invariant region complementary to eukaryotic 5S rRNA.
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The 3-terminal primary structure of five eukaryotic 18S rRNAs determined by the direct chemical method of sequencing. The highly conserved sequences include an invariant region complementary to eukaryotic 5S rRNA.

机译:通过直接化学测序方法确定的5个真核18S rRNA的3末端一级结构。高度保守的序列包括与真核5S rRNA互补的恒定区。

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摘要

The 3'-terminal sequences of 18S rRNA from chicken reticulocyte, mouse sarcoma, rat liver, rabbit reticulocyte and barley embryo were determined by the direct chemical sequencing method. The regions sequenced show complete homology for the first 73 nucleotides. A sequence 5'-proximal to the m6(2)Am6(2)A residues that is complementary to eukaryotic 5S RNAs is totally conserved. This supports the hypothesis that base-paired interaction between 5S and 18S rRNA, which are present in the large and small ribosomal subunits respectively, may be involved in the reversible association of ribosomal subunits during protein synthesis.
机译:通过直接化学测序法确定了来自鸡网织红细胞,小鼠肉瘤,大鼠肝脏,兔网织红细胞和大麦胚的18S rRNA的3'端序列。测序的区域显示出与前73个核苷酸完全同源。与真核5S RNA互补的m6(2)Am6(2)A残基最接近的5'序列是完全保守的。这支持了以下假设:蛋白质合成过程中,分别存在于大和小的核糖体亚基中的5S和18S rRNA之间的碱基配对相互作用可能参与了核糖体亚基的可逆结合。

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