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Efficient and specific internal cleavage of a retroviral palindromic DNA sequence by tetrameric HIV-1 integrase.

机译:通过四聚体HIV-1整合酶对逆转录病毒回文DNA序列进行高效且特异的内部切割。

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摘要

BACKGROUND: HIV-1 integrase (IN) catalyses the retroviral integration process, removing two nucleotides from each long terminal repeat and inserting the processed viral DNA into the target DNA. It is widely assumed that the strand transfer step has no sequence specificity. However, recently, it has been reported by several groups that integration sites display a preference for palindromic sequences, suggesting that a symmetry in the target DNA may stabilise the tetrameric organisation of IN in the synaptic complex. METHODOLOGY/PRINCIPAL FINDINGS: We assessed the ability of several palindrome-containing sequences to organise tetrameric IN and investigated the ability of IN to catalyse DNA cleavage at internal positions. Only one palindromic sequence was successfully cleaved by IN. Interestingly, this symmetrical sequence corresponded to the 2-LTR junction of retroviral DNA circles-a palindrome similar but not identical to the consensus sequence found at integration sites. This reaction depended strictly on the cognate retroviral sequence of IN and required a full-length wild-type IN. Furthermore, the oligomeric state of IN responsible for this cleavage differed from that involved in the 3'-processing reaction. Palindromic cleavage strictly required the tetrameric form, whereas 3'-processing was efficiently catalysed by a dimer. CONCLUSIONS/SIGNIFICANCE: Our findings suggest that the restriction-like cleavage of palindromic sequences may be a general physiological activity of retroviral INs and that IN tetramerisation is strongly favoured by DNA symmetry, either at the target site for the concerted integration or when the DNA contains the 2-LTR junction in the case of the palindromic internal cleavage.
机译:背景:HIV-1整合酶(IN)催化逆转录病毒整合过程,从每个长末端重复序列中删除两个核苷酸,并将经过处理的病毒DNA插入目标DNA中。人们普遍认为,链转移步骤没有序列特异性。然而,最近,几个小组已经报道了整合位点显示出对回文序列的偏好,这表明靶DNA中的对称性可以稳定突触复合物中IN的四聚体组织。方法/主要发现:我们评估了几个包含回文序列的序列组织四聚体IN的能力,并研究了IN催化内部位置上的DNA裂解的能力。 IN仅成功切割了一个回文序列。有趣的是,该对称序列对应于逆转录病毒DNA圈的2-LTR连接,这是一个回文,与整合位点的共有序列相似但不相同。该反应严格取决于IN的同源逆转录病毒序列,并且需要全长野生型IN。此外,负责这种切割的IN的低聚状态不同于3'加工反应中涉及的状态。回文裂解严格地要求四聚体形式,而3'-加工被二聚体有效地催化。结论/意义:我们的发现表明回文序列的限制性酶切裂解可能是逆转录病毒IN的一般生理活性,并且DNA对称性强烈支持IN四聚化,无论是在目标位点进行整合还是在DNA包含在回文内部分裂的情况下,2-LTR交界处。

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