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密切相关的锥虫物种的大环DNA和编辑后的mRNA序列:kRNA编辑对大环基因组进化的影响

Maxicircle DNA and edited mRNA sequences of closely related trypanosome species: implications of kRNA editing for evolution of maxicircle genomes.

作者信息

Read L K, Fish W R, Muthiani A M, Stuart K

机构信息

Seattle Biomedical Research Institute, WA 98109.

出版信息

Nucleic Acids Res. 1993 Aug 25;21(17):4073-8. doi: 10.1093/nar/21.17.4073.

Abstract

kRNA editing produces functional mRNAs by uridine insertion and deletion. We analyzed portions of the apocytochrome b and NADH dehydrogenase subunits 7 and 8 (ND7 and 8) genes and their edited mRNAs in Trypanosoma congolense and compared these to the corresponding sequences in T.brucei. We find that these genes are highly diverged between the two species, especially in the positions of thymidines and in nucleotide transitions. Editing eliminates differences in encoded uridines producing edited mRNAs that are identical except for the nucleotide substitutions. The resulting predicted proteins are identical since all nucleotide substitutions are silent. A T.congolense minicircle-encoded gRNA which can specify editing of ND8 mRNA was identified. This gRNA can basepair with both T.congolense and T.brucei ND8 mRNA despite nucleotide transitions due to the flexibility of G:U base-pairing. These results illustrate how editing affects the characteristics of maxicircle sequence divergence and allows protein sequence conservation despite a level of DNA sequence divergence which would be predicted to be intolerable in the absence of editing.

摘要

动质体RNA编辑通过尿苷插入和缺失产生功能性mRNA。我们分析了刚果锥虫细胞色素b脱辅基蛋白以及NADH脱氢酶亚基7和8(ND7和ND8)基因的部分片段及其编辑后的mRNA,并将其与布氏锥虫中的相应序列进行比较。我们发现这两个物种的这些基因高度分化,尤其是在胸苷位置和核苷酸转换方面。编辑消除了编码尿苷中的差异,产生了除核苷酸替换外完全相同的编辑后mRNA。由于所有核苷酸替换都是沉默的,因此产生的预测蛋白质是相同的。我们鉴定出一种可指定ND8 mRNA编辑的刚果锥虫微小环编码引导RNA(gRNA)。尽管由于G:U碱基配对的灵活性存在核苷酸转换,但这种gRNA可以与刚果锥虫和布氏锥虫的ND8 mRNA碱基配对。这些结果说明了编辑如何影响大环序列差异的特征,并允许蛋白质序列保守,尽管在没有编辑的情况下,一定程度的DNA序列差异预计是不可容忍的。

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本文引用的文献

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Kinetoplast DNA from Trypanosoma vivax and T. congolense.来自活泼锥虫和刚果锥虫的动基体DNA。
Mol Biochem Parasitol. 1985 May;15(2):129-42. doi: 10.1016/0166-6851(85)90114-8.
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Origin and evolution of mitochondrial DNA.线粒体DNA的起源与进化
Annu Rev Cell Biol. 1989;5:25-50. doi: 10.1146/annurev.cb.05.110189.000325.

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