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β珠蛋白mRNA 5'非翻译区的进化保守元件在cDNA合成过程中介导独特发夹结构的位点特异性引发。

Evolutionarily conserved elements in the 5' untranslated region of beta globin mRNA mediate site-specific priming of a unique hairpin structure during cDNA synthesis.

作者信息

Volloch V Z, Schweitzer B, Rits S

机构信息

Boston Biomedical Research Institute, MA 02114.

出版信息

Nucleic Acids Res. 1994 Dec 11;22(24):5302-9. doi: 10.1093/nar/22.24.5302.

Abstract

Generation of double-stranded cDNA during reverse transcription of a variety of mRNA molecules is well known to involve the formation of covalently linked antisense and sense strands in a hairpin configuration. In the present study we have examined the sequence of molecular events which occurs during cDNA synthesis from mouse beta globin mRNA, in particular the self-priming event that initiates synthesis of sense-strand DNA. Upon completion of reverse transcription of globin mRNA and the removal of RNA template by RNase H activity associated with reverse transcriptase, the 3' end of cDNA snaps back to form a stable double-stranded structure, which is extended by reverse transcriptase to generate the sense DNA strand. Surprisingly, the fourteen 3' terminal nucleotides of the beta globin antisense DNA strand (cDNA) have strong complementarity with an internal segment of the same molecule corresponding to a portion of the 5'-untranslated region of the mRNA located just upstream of the translation start site. Efficient second strand cDNA synthesis appears to require the occurrence within the cDNA molecule of these two complementary elements, one of which must be 3'-terminal. A second surprising feature is that the strong complementarity between the terminal and the internal portions of the molecule exists in the antisense DNA and not in the sense mRNA strand. This is because A:C mismatches on the sense strand correspond to relatively stable T:G base pairs on the antisense strand. Such an extended region of complementarity within the segment of cDNA corresponding to the short 5' untranslated region of beta globin mRNA is unlikely to occur purely by chance, suggesting some underlying function. In this regard it is of interest that cDNAs of adult beta globin mRNAs from other mammalian species show a very similar arrangement of complementary elements, and that complementarity is heavily conserved, even when there are substitutions in nucleotide sequence.

摘要

众所周知,在多种mRNA分子逆转录过程中生成双链cDNA涉及以发夹结构形成共价连接的反义链和有义链。在本研究中,我们检测了从小鼠β珠蛋白mRNA合成cDNA过程中发生的分子事件序列,特别是启动有义链DNA合成的自我引发事件。在珠蛋白mRNA逆转录完成并通过与逆转录酶相关的RNase H活性去除RNA模板后,cDNA的3'端折回形成稳定的双链结构,该结构由逆转录酶延伸以生成有义DNA链。令人惊讶的是,β珠蛋白反义DNA链(cDNA)的14个3'末端核苷酸与同一分子的内部片段具有很强的互补性,该内部片段对应于位于翻译起始位点上游的mRNA的5'-非翻译区的一部分。高效的第二链cDNA合成似乎需要在cDNA分子内出现这两个互补元件,其中一个必须是3'-末端的。另一个令人惊讶的特征是,分子末端和内部部分之间的强互补性存在于反义DNA中,而不存在于有义mRNA链中。这是因为有义链上的A:C错配对应于反义链上相对稳定的T:G碱基对。在对应于β珠蛋白mRNA短5'非翻译区的cDNA片段内的这种延伸的互补区域不太可能纯粹偶然出现,这表明存在某种潜在功能。在这方面,有趣的是来自其他哺乳动物物种的成人β珠蛋白mRNA的cDNA显示出非常相似的互补元件排列,并且即使核苷酸序列存在取代,互补性也高度保守。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82e4/332075/d49475489b23/nar00048-0166-a.jpg

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