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Human 18 S ribosomal RNA sequence inferred from DNA sequence. Variations in 18 S sequences and secondary modification patterns between vertebrates.

机译:从DNA序列推断出人18 S核糖体RNA序列。脊椎动物之间18 S序列的变异和二级修饰模式。

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摘要

We have determined the DNA sequences encoding 18 S ribosomal RNA in man and in the frog, Xenopus borealis. We have also corrected the Xenopus laevis 18 S sequence: an A residue follows G-684 in the sequence. These and other available data provide a number of representative examples of variation in primary structure and secondary modification of 18 S ribosomal RNA between different groups of vertebrates. First, Xenopus laevis and Xenopus borealis 18 S ribosomal genes differ from each other by only two base substitutions, and we have found no evidence of intraspecies heterogeneity within the 18 S ribosomal DNA of Xenopus (in contrast to the Xenopus transcribed spacers). Second, the human 18 S sequence differs from that of Xenopus by approx. 6.5%. About 4% of the differences are single base changes; the remainder comprise insertions in the human sequence and other changes affecting several nucleotides. Most of these more extensive changes are clustered in a relatively short region between nucleotides 190 and 280 in the human sequence. Third, the human 18 S sequence differs from non-primate mammalian sequences by only about 1%. Fourth, nearly all of the 47 methyl groups in mammalian 18 S ribosomal RNA can be located in the sequence. The methyl group distribution corresponds closely to that in Xenopus, but there are several extra methyl groups in mammalian 18 S ribosomal RNA. Finally, minor revisions are made to the estimated numbers of pseudouridines in human and Xenopus 18 S ribosomal RNA.
机译:我们已经确定了在人和青蛙,非洲爪蟾中编码18 S核糖体RNA的DNA序列。我们还纠正了非洲爪蟾18 S序列:在该序列中G 684之后有一个A残基。这些和其他可用数据提供了不同组脊椎动物之间18 S核糖体RNA一级结构变异和二级修饰变异的许多代表性示例。首先,非洲爪蟾和非洲爪蟾的18 S核糖体基因彼此仅有两个碱基取代,并且我们没有发现非洲爪蟾18 S核糖体DNA内部物种异质性的证据(与非洲爪蟾转录间隔区相反)。其次,人的18 S序列与非洲爪蟾的序列相差约20%。 6.5%。大约4%的差异是单一基准的变化;其余的包括在人序列中的插入和影响几个核苷酸的其他变化。这些更广泛的变化中的大多数都聚集在人序列中核苷酸190和280之间的较短区域中。第三,人的18 S序列与非灵长类哺乳动物序列仅相差约1%。第四,哺乳动物18 S核糖体RNA中几乎所有的47个甲基都可以位于序列中。甲基的分布与非洲爪蟾非常接近,但是哺乳动物的18 S核糖体RNA中有几个额外的甲基。最后,对人和非洲爪蟾18 S核糖体RNA中假尿苷的估计数量进行了少量修订。

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