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一种新型的基于位点特异性重组酶的靶向多重基因组缺失系统,该系统利用嵌合的 loxP 和 mrpS 位点。

A new site-specific recombinase-mediated system for targeted multiple genomic deletions employing chimeric loxP and mrpS sites.

机构信息

Institut für Industrielle Genetik, Allmandring 31, Universität Stuttgart, 70569, Stuttgart, Germany.

出版信息

Appl Microbiol Biotechnol. 2013 Aug;97(15):6845-56. doi: 10.1007/s00253-013-4827-8. Epub 2013 Mar 28.

Abstract

A newly designed site-specific recombination system is presented which allows multiple targeted markerless deletions. The most frequently used tool for removing selection markers or to introduce genes by recombination-mediated cassette exchange is the Cre/loxP system. Many mutant loxP sites have been created for this purpose. However, this study presents a chimeric mutant loxP site denoted mroxP-site. The mroxP site consists of one Cre (loxP/2) and one MrpA (mrpS/2) binding site separated by a palindromic 6-bp spacer sequence. Two mroxP-sites can be recombined by Cre recombinase in head-to-tail as well as in head-to-head orientation. In the head-to-head orientation and the loxP half-sites inside, Cre removes the loxP half-sites during site-specific recombination, creating a new site, mrmrP. The new site is essentially a mrpS site with a palindromic spacer and cannot be used by Cre for recombination anymore. It does, however, present a substrate for the recombinase MrpA. This new system has been successfully applied introducing multiple targeted gene deletions into the Escherichia coli genome. Similar to Cre/loxP and FLP/FRT, this system may be adapted for genetic engineering of other pro- and eukaryotes.

摘要

一个新设计的位点特异性重组系统,允许多个靶向无标记缺失。最常用于去除选择标记或通过重组介导的盒式交换引入基因的工具是 Cre/loxP 系统。为此创建了许多突变的 loxP 位点。然而,本研究提出了一个嵌合突变的 loxP 位点,称为 mroxP 位点。mroxP 位点由一个 Cre(loxP/2)和一个 MrpA(mrpS/2)结合位点组成,由一个回文 6 个碱基的间隔序列隔开。两个 mroxP 位点可以通过 Cre 重组酶以头对头和头对尾的方式进行重组。在头对头的取向和loxP 半位点内部,Cre 在特异性重组过程中去除 loxP 半位点,产生一个新的位点 mrmrP。新位点本质上是一个 mrpS 位点,带有一个回文间隔序列,不能再被 Cre 用于重组。然而,它为重组酶 MrpA 提供了一个底物。该新系统已成功地应用于大肠埃希氏菌基因组中的多个靶向基因缺失的引入。类似于 Cre/loxP 和 FLP/FRT,该系统可用于原核和真核生物的基因工程。

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