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首页> 外文期刊>Journal of Molecular Biology >Use of computer-designed group II introns to disrupt Escherichia coli DExH/D-box protein and DNA helicase genes.
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Use of computer-designed group II introns to disrupt Escherichia coli DExH/D-box protein and DNA helicase genes.

机译:使用计算机设计的II组内含子破坏大肠杆菌DExH / D-box蛋白和DNA解旋酶基因。

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摘要

Mobile group II introns are site-specific retroelements that use a novel mobility mechanism in which the excised intron RNA inserts directly into a DNA target site and is then reverse transcribed by the associated intron-encoded protein. Because the DNA target site is recognized primarily by base-pairing of the intron RNA with only a small number of positions recognized by the protein, it has been possible to develop group II introns into a new type of gene targeting vector ("targetron"), which can be reprogrammed to insert into desired DNA targets simply by modifying the intron RNA. Here, we used databases of retargeted Lactococcus lactis Ll.LtrB group II introns and a compilation of nucleotide frequencies at active target sites to develop an algorithm that predicts optimal Ll.LtrB intron-insertion sites and designs primers for modifying the intron to insert into those sites. In a test of the algorithm, we designed one or two targetrons to disrupt each of 28 Escherichia coli genes encoding DExH/D-box and DNA helicase-related proteins and tested for the desired disruptants by PCR screening of 100 colonies. In 21 cases, we obtained disruptions at frequencies of 1-80% without selection, and in six other cases, where disruptants were not identified in the initial PCR screen, we readily obtained specific disruptions by using the same targetrons with a retrotransposition-activated selectable marker. Only one DExH/D-box protein gene, secA, which was known to be essential, did not give viable disruptants. The apparent dispensability of DExH/D-box proteins in E.coli contrasts with the situation in yeast, where the majority of such proteins are essential. The methods developed here should permit the rapid and efficient disruption of any bacterial gene, the computational analysis provides new insight into group II intron target site recognition, and the set of E.coli DExH/D-box protein and DNA helicase disruptants should be useful for analyzing the function of these proteins.
机译:流动的II组内含子是位点特异性的元件,它使用一种新颖的迁移机制,其中被切除的内含子RNA直接插入DNA靶位点,然后被相关的内含子编码蛋白逆转录。因为DNA靶位点主要是通过内含子RNA的碱基配对识别的,而蛋白质仅识别出少数位置,所以有可能将II组内含子发展成为新型的基因靶向载体(“ targetron”) ,只需修改内含子RNA,即可将其重新编程为插入所需的DNA靶标。在这里,我们使用了重定位的乳酸乳球菌Ll.LtrB II组内含子的数据库和在活性靶位点处核苷酸频率的汇编来开发一种算法,该算法可预测最佳的Ll.LtrB内含子插入位点,并设计用于修饰内含子的引物,以插入到这些内含子中网站。在对该算法的测试中,我们设计了一个或两个靶标,以破坏28个编码DExH / D-box和DNA解旋酶相关蛋白的大肠杆菌基因,并通过PCR筛选100个菌落测试所需的破坏子。在21种情况下,我们无需选择即可获得1-80%频率的干扰,而在其他六种情况下,在初始PCR筛选中未发现干扰物时,我们很容易通过使用具有逆转录激活激活的选择子的相同靶标来获得了特异性干扰。标记。只有一个已知的必不可少的DExH / D-box蛋白基因secA没有提供可行的破坏物。 DExH / D-box蛋白在大肠杆菌中的明显可分配性与酵母中的情况形成了鲜明对比,在酵母中,大多数此类蛋白都是必不可少的。此处开发的方法应允许快速有效地破坏任何细菌基因,计算分析可提供对II组内含子靶位点识别的新见识,并且大肠杆菌DExH / D-box蛋白和DNA解旋酶破坏剂组应是有用的分析这些蛋白质的功能。

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