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逆转录的起始需要RNA二级结构的特定取向。

A specific orientation of RNA secondary structures is required for initiation of reverse transcription.

作者信息

Aiyar A, Ge Z, Leis J

机构信息

Department of Biochemistry, Case Western Reserve University School of Medicine, Cleveland, Ohio 44106.

出版信息

J Virol. 1994 Feb;68(2):611-8. doi: 10.1128/JVI.68.2.611-618.1994.

Abstract

The 5' end of avian retrovirus RNA near the primer-binding site (PBS) forms two secondary structures, the U5-inverted repeat (U5-IR) and the U5-leader stems, and contains a 7-nucleotide sequence that anneals to the T psi C loop of the tRNA(Trp) primer. Mutations that disrupt any of these base pair interactions cause defects in initiation of reverse transcription both in vivo and in vitro (D. Cobrinik, A. Aiyar, Z. Ge, M. Katzman, H. Huang, and J. Leis, J. Virol. 65:3864-3872, 1991; A. Aiyar, D. Cobrinik, Z. Ge, H.-J. Kung, and J. Leis, J. Virol. 66:2464-2472, 1992). We have now examined the effect of perturbing the non-base-paired intervening "spacer" sequences between these secondary-structure elements. Small deletions or insertions in these intervening sequences decreased initiation of reverse transcription in vitro. In contrast, base substitutions, which maintain the spacing distances between the structures, had no detectable effect. Additionally, a small deletion at the 3' end of the PBS caused a significant decrease in initiation of reverse transcription whereas substitution mutations again had no effect. Together, these results indicate that reverse transcriptase forms a complex in which the different structural elements are maintained in a specific orientation that is required for efficient initiation of reverse transcription. Specific sequence recognition of the duplex structures by reverse transcriptase is also required since mosaic RNAs that combine the human immunodeficiency virus type 1 PBS with avian sequences is not efficiently utilized for reverse transcription even though the primer used can anneal to the substituted PBS.

摘要

禽逆转录病毒RNA靠近引物结合位点(PBS)的5'端形成两种二级结构,即U5反向重复序列(U5-IR)和U5前导茎,并包含一个7核苷酸序列,该序列可与tRNA(Trp)引物的TψC环退火。破坏这些碱基对相互作用中的任何一种的突变都会导致体内和体外逆转录起始出现缺陷(D. 科布林尼克、A. 艾亚尔、Z. 葛、M. 卡茨曼、H. 黄和J. 莱斯,《病毒学杂志》65:3864 - 3872,1991年;A. 艾亚尔、D. 科布林尼克、Z. 葛、H.-J. 孔和J. 莱斯,《病毒学杂志》66:2464 - 2472,1992年)。我们现在研究了干扰这些二级结构元件之间非碱基配对的中间“间隔”序列的影响。这些中间序列中的小缺失或插入会降低体外逆转录的起始。相比之下,保持结构之间间隔距离的碱基替换没有可检测到的影响。此外,PBS 3'端的一个小缺失导致逆转录起始显著减少,而替换突变再次没有影响。总之,这些结果表明逆转录酶形成了一个复合物,其中不同的结构元件以有效起始逆转录所需的特定方向保持。逆转录酶对双链结构的特异性序列识别也是必需的,因为即使所使用的引物可以与替代的PBS退火,但将人类免疫缺陷病毒1型PBS与禽序列结合的嵌合RNA也不能有效地用于逆转录。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/edd1/236493/23517587d7cc/jvirol00011-0046-a.jpg

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