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首页> 外文期刊>Molecular Microbiology >Genetic analysis of the strong gyrase site (SGS) of bacteriophage Mu: localization of determinants required for promoting Mu replication.
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Genetic analysis of the strong gyrase site (SGS) of bacteriophage Mu: localization of determinants required for promoting Mu replication.

机译:噬菌体Mu的强促旋酶位点(SGS)的遗传分析:促进Mu复制所需的决定簇的定位。

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The Mu strong gyrase site (SGS), located in the centre of the Mu genome, is required for efficient Mu replication, as it promotes synapsis of the prophage termini. Other gyrase sites tested, even very strong ones, were unable to substitute for the SGS in Mu replication. To determine the features required for its unique properties, a deletion analysis was performed on the SGS. For this analysis, we defined the 20 bp centred on the midpoint of the 4 bp staggered cleavage made by gyrase to be the 'core' and the flanking sequences to be the 'arms'. The deletion analysis showed that (i) approximately 40 bp of the right arm is required, in addition to core sequences, for both efficient Mu replication and gyrase cleavage; and (ii) the left arm was not required for efficient Mu replication, although it was required for efficient gyrase cleavage. These observations implicated the right arm as the unique feature of the SGS. The second observation showed that strong gyrase cleavage and Mu replication could be dissociated and suggested that even weak gyrase sites, if supplied with the right arm of the SGS, could promote Mu replication. Hybrid sites were constructed with gyrase sites that could not support efficient Mu replication. The SGS right arm was used to replace one arm of the strong pSC101 gyrase site or the weaker pBR322 site. The pSC101 hybrid site allowed efficient Mu replication, whereas the pBR322 hybrid site allowed substantial, but reduced, replication. Hence, it appears that optimal Mu replication requires a central strong gyrase site with the properties imparted by the right arm sequences. Possible roles for the SGS right arm in Mu replication are addressed.
机译:位于Mu基因组中心的Mu强回旋酶位点(SGS)是有效的Mu复制所必需的,因为它促进了前噬菌体末端的突触。测试的其他回旋酶位点,甚至非常强的位点,都无法替代Mu复制中的SGS。为了确定其独特属性所需的功能,对SGS进行了删除分析。对于此分析,我们将以旋转酶进行4 bp交错切割的中点为中心的20 bp定义为“核心”,将侧翼序列定义为“臂”。缺失分析表明:(i)除核心序列外,右臂约需要40 bp才能有效地复制Mu和进行酶促切割。 (ii)尽管有效的促旋酶裂解是必需的,但左臂不是有效的Mu复制所必需的。这些观察暗示右臂是SGS的独特功能。第二个观察结果表明,强促旋酶切割和Mu复制可以被解离,并暗示即使弱的促旋酶位点(如果与SGS的右臂一起提供)也可以促进Mu复制。用不能支持有效的Mu复制的促旋酶位点构建杂交位点。 SGS右臂用于替换强pSC101促旋酶位点或弱pBR322位点的一只手臂。 pSC101杂交位点允许有效的Mu复制,而pBR322杂交位点允许大量但减少的复制。因此,似乎最佳的Mu复制需要具有右臂序列赋予的性质的中央强促旋酶位点。解决了SGS右臂在Mu复制中的可能作用。

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