...
首页> 外文期刊>Journal of bacteriology >The Left End of IS2: a Compromise between Transpositional Activity and an Essential Promoter Function That Regulates the Transposition Pathway
【24h】

The Left End of IS2: a Compromise between Transpositional Activity and an Essential Promoter Function That Regulates the Transposition Pathway

机译:IS2的左端:换位活动和调节换位途径的基本启动子功能之间的妥协

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Cut-and-paste (simple insertion) and replicative transposition pathways are the two classical paradigms by which transposable elements are mobilized. A novel variation of cut and paste, a two-step transposition cycle, has recently been proposed for insertion sequences of the IS3 family. In IS2 this variation involves the formation of a circular, putative transposition intermediate (the minicircle) in the first step. Two aspects of the minicircle may involve its proposed role in the second step (integration into the target). The first is the presence of a highly reactive junction formed by the two abutted ends of the element. The second is the assembly at the minicircle junction of a strong hybrid promoter which generates higher levels of transposase. In this report we show that IS2 possesses a highly reactive minicircle junction at which a strong promoter is assembled and that the promoter is needed for the efficient completion of the pathway. We show that the sequence diversions which characterize the imperfect inverted repeats or ends of this element have evolved specifically to permit the formation and optimal function of this promoter. While these sequence diversions eliminate catalytic activity of the left end (IRL) in the linear element, sufficient sequence information essential for catalysis is retained by the IRL in the context of the minicircle junction. These data confirm that the minicircle is an essential intermediate in the two-step transposition pathway of IS2.
机译:剪切和粘贴(简单插入)和复制性转座途径是动员转座因子的两个经典范例。最近针对IS 3 家族的插入序列提出了一种新颖的剪切和粘贴变体,即两步换位循环。在IS 2 中,此变异包括在第一步中形成圆形推定的转座中间体(小圆)。小圆圈的两个方面可能涉及其在第二步中的拟议角色(整合到目标中)。首先是由元件的两个邻接端形成的高反应性结。第二个是在强杂合启动子的微圆连接处的组装,其产生更高水平的转座酶。在此报告中,我们表明IS 2 具有高反应性的微圆连接,在该连接处组装有强启动子,并且该启动子对于有效完成该途径是必需的。我们表明,表征该元件的不完美的反向重复序列或末端的序列转移已经专门进化,以允许该启动子的形成和最佳功能。尽管这些序列转移消除了线性元素中左端(IRL)的催化活性,但在微圆连接的背景下,IRL保留了催化必不可少的足够的序列信息。这些数据证实了小圆是IS 2 的两步转座途径中必不可少的中间体。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号