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HIV-1中的杂交双链连接点及冈崎片段处的糖构象。

Sugar conformations at hybrid duplex junctions in HIV-1 and Okazaki fragments.

作者信息

Salazar M, Champoux J J, Reid B R

机构信息

Department of Chemistry, University of Washington, Seattle 98195.

出版信息

Biochemistry. 1993 Jan 26;32(3):739-44. doi: 10.1021/bi00054a002.

DOI:10.1021/bi00054a002
PMID:8380708
Abstract

We have carried out a solution study of the local conformation in a hybrid-chimeric duplex of the [sequence: see text] type (where r and D represent RNA and DNA). The object of this study was to investigate the sugar conformations at the internal junction in the hybrid-DNA octamer duplex (gccaCTGC). (GCAGTGGC)--where the lower-case letters represent RNA residues. Such duplexes represent good models for Okazaki fragments in which RNA primers are covalently extended into DNA strands during DNA replication of the lagging strand. Furthermore, this particular sequence occurs during HIV-1 retrovirus reverse transcription. The chimeric RNA-DNA strand and the complementary pure DNA strand chosen for this study result from the priming of (-)-strand DNA synthesis by tRNA(Lys) and subsequent (+)-strand DNA synthesis by reverse transcriptase prior to HIV-1 retrovirus integration. Despite the unusual specificity of the RNase H activity of reverse transcriptase, which cleaves the RNA c-a phosphodiester rather than the junction a-C linkage, we found no major structural differences among the RNA c-a phosphodiester rather than the junction a-C linkage, we found no major structural differences among the RNA sugar conformations--all RNA sugars were found in the normal C3'-endo A-form conformation. Instead, we find that the first DNA residue of the chimeric strand (5C) assumes a sugar conformation in the C4'-exo to O4'-endo range (P = 54-90 degrees). Furthermore, the hybrid segment of this duplex is more heteronomous than previously assumed for duplexes of the [sequence: see text] type.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

我们对[序列:见原文]类型的杂交嵌合双链体(其中r和D分别代表RNA和DNA)的局部构象进行了溶液研究。本研究的目的是调查杂交DNA八聚体双链体(gccaCTGC)(GCAGTGGC)内部连接处的糖构象,其中小写字母代表RNA残基。这种双链体是冈崎片段的良好模型,在滞后链的DNA复制过程中,RNA引物会共价延伸到DNA链中。此外,在HIV-1逆转录病毒逆转录过程中会出现这个特定序列。本研究中选择的嵌合RNA-DNA链和互补的纯DNA链,是由tRNA(Lys)引发(-)链DNA合成,随后在HIV-1逆转录病毒整合之前由逆转录酶进行(+)链DNA合成产生的。尽管逆转录酶的RNase H活性具有不寻常的特异性,它切割RNA的c-a磷酸二酯键而非连接处的a-C键,但我们发现RNA糖构象之间没有主要结构差异——所有RNA糖均处于正常的C3'-内端A构象。相反,我们发现嵌合链的第一个DNA残基(5C)呈现出C4'-外端到O4'-内端范围内的糖构象(P = 54 - 90度)。此外,该双链体的杂交片段比之前对[序列:见原文]类型双链体所假设的更加异质。(摘要截于250字)

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