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Bacteriophage SPP1 pac Cleavage: A Precise Cut without Sequence Specificity Requirement

机译:噬菌体SPP1 PAC切割:无序列特异性要求的精确切割

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In many tailed bacteriophages, DNA packaging is initiated by recognition and cleavage of a specific sequence pac by the small (TerS) and large (TerL) terminase subunits. It was previously shown that the SPP1 pac region has two sequences where TerS binds (pacR and pacL), flanking the segment where TerL cleaves the SPP1 DNA (pacC). However, the pac-specific sequences required to achieve this endonucleolytic cut were not established. Their characterization is essential to understand the underlying mechanism. We show that the pacR sequence localized within 35 bp downstream of the pac cut can be extensively degenerated, including its c1 and c2 repeats, and that only a disruption of a 5-bp polyadenine tract impairs the pac cleavage. This result together with deletion analysis of pacL shows that the specific DNA sequences required for targeting the terminase for pac cleavage are considerably shorter than the large region bound by TerS. Furthermore, extensive degeneration of the 6-bp target sequence within pacC where pac cleavage occurs reveals that TerL maintains, remarkably, its precise position of cleavage. Studies with SPP1-related phages show the conservation of the cut position, irrespective of the sequence variation in pacC and in pacR or the changes in pacL pacC distance. Mechanistically, our data are compatible with a model in which TerS interactions with part of the pacL sequence and a poly-A tract in pacR are sufficient to orient very accurately the TerL nuclease to a defined pacC position. They also demonstrate that the resulting precise cut at pacC is independent of the targeted DNA sequence. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在许多尾菌噬菌体中,通过小(TERS)和大(TERL)末端亚基识别和切割来引发DNA包装。先前,SPP1 PAC区域具有两种序列,其中TERS结合(PACR和PACL),侧翼TERL切割SPP1 DNA(PACC)。然而,未建立达到这种内切核水溶性切割所需的PAC特异性序列。他们的表征对于理解潜在机制至关重要。我们表明,在PAC切口下游的35bp内定位的PACR序列可以广泛退化,包括其C1和C2重复,并且仅发生5-BP多腺嘌呤的破坏损害了PAC切割。该结果与PACL的缺失分析一起表明,靶向终止酶的特异性DNA序列对于PAC切割的终止酶所需的特异性DNA序列显着短于由TERS结合的大区域短。此外,PACC中的6-BP靶序列的广泛退化,其中PAC切割发生,显示Ter1显着地保持其裂解的精确位置。与SPP1相关噬管的研究表明,无论PACC和PACR中的序列变异还是PACL PACC距离的变化,无论均匀的序列变异如何,都会储存切割位置。机械地,我们的数据与与PICR序列部分的TERS相互作用的模型与PACR中的多个序列相互作用足以使TERL核酸酶非常精确地定义为定义的PACC位置。他们还证明,PACC的所得精确切割与靶向DNA序列无关。 (c)2017 Elsevier Ltd.保留所有权利。

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