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交替嘌呤序列(PPTs)以及PPT相邻序列突变对劳氏肉瘤病毒逆转录酶的病毒复制和切割特异性的影响。

The effects of alternate polypurine tracts (PPTs) and mutations of sequences adjacent to the PPT on viral replication and cleavage specificity of the Rous sarcoma virus reverse transcriptase.

作者信息

Chang Kevin W, Oh Jangsuk, Alvord W Gregory, Hughes Stephen H

机构信息

HIV Drug Resistance Program, National Cancer Institute, Frederick, Maryland 21702-1201, USA.

出版信息

J Virol. 2008 Sep;82(17):8592-604. doi: 10.1128/JVI.00499-08. Epub 2008 Jun 18.

Abstract

We previously reported that a mutant Rous sarcoma virus (RSV) with an alternate polypurine tract (PPT), DuckHepBFlipPPT, had unexpectedly high titers and that the PPT was miscleaved primarily at one position following a GA dinucleotide by the RNase H of reverse transcriptase (RT). This miscleavage resulted in a portion of the 3' end of the PPT (5'-ATGTA) being added to the end of U3 of the linear viral DNA. To better understand the RNase H cleavage by RSV RT, we made a number of mutations within the DuckHepBFlipPPT and in the sequences adjacent to the PPT. Deleting the entire ATGTA sequence from the DuckHepBFlipPPT increased the relative titer to wild-type levels, while point mutations within the ATGTA sequence reduced the relative titer but had minimal effects on the cleavage specificity. However, mutating a sequence 5' of ATGTA affected the relative titer of the virus and caused the RNase H of RSV RT to lose the ability to cleave the PPT specifically. In addition, although mutations in the conserved stretch of thymidine residues upstream of the PPT did not affect the relative titer or cleavage specificity, the mutation of some of the nucleotides immediately upstream of the PPT did affect the titer and cleavage specificity. Taken together, our studies show that the structure of the PPT in the context of the cognate RT, rather than a specific sequence, is important for the proper cleavage by RSV RT.

摘要

我们之前报道过,一种带有替代多聚嘌呤序列(PPT)的突变型劳斯肉瘤病毒(RSV),即鸭乙肝翻转PPT,具有出乎意料的高滴度,并且该PPT主要在逆转录酶(RT)的核糖核酸酶H作用下,于GA二核苷酸后的一个位置发生错误切割。这种错误切割导致PPT 3'端的一部分(5'-ATGTA)被添加到线性病毒DNA的U3末端。为了更好地理解RSV RT的核糖核酸酶H切割作用,我们在鸭乙肝翻转PPT及其邻近序列中进行了一系列突变。从鸭乙肝翻转PPT中删除整个ATGTA序列可使相对滴度提高到野生型水平,而ATGTA序列内的点突变会降低相对滴度,但对切割特异性影响最小。然而,突变ATGTA 5'端的一个序列会影响病毒的相对滴度,并导致RSV RT的核糖核酸酶H失去特异性切割PPT的能力。此外,尽管PPT上游保守的胸腺嘧啶残基序列中的突变不影响相对滴度或切割特异性,但PPT紧邻上游的一些核苷酸的突变确实会影响滴度和切割特异性。综上所述,我们的研究表明,在同源RT背景下PPT的结构而非特定序列,对于RSV RT的正确切割很重要。

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