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首页> 外文期刊>Nucleic Acids Research >Gene targeting using randomly inserted group II introns (targetrons) recovered from an Escherichia coli gene disruption library
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Gene targeting using randomly inserted group II introns (targetrons) recovered from an Escherichia coli gene disruption library

机译:使用从大肠杆菌基因破坏文库中回收的随机插入的第II组内含子(靶子)进行基因靶向

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The Lactococcus lactis LI.LtrB group II intron retrohomes by reverse-splicing into one strand of a double-stranded DNA target site, while the intronencoded protein cleaves the opposite strand and uses it to prime reverse transcription of the inserted intron RNA. The protein and intron RNA function in a ribonucleoprotein particle, with much of the DNA target sequence recognized by base-pairing of the intron RNA. Consequently, group II introns can be reprogrammed to insert into specific or random DNA sites by substituting specific or random nucleotide residues in the intron RNA. Here, we show that an Escherichia coli gene disruption library obtained using such randomly inserting LI.LtrB introns contains most viable E.coli gene disruptions. Further, each inserted intron is targeted to a specific site by its unique base-pairing regions, and in most cases, could be recovered by PCR and used unmodified to obtain the desired single disruptant. Additionally, we identified a subset of introns that insert at sites lacking T+5, a nucleotide residue critical for second-strand cleavage. All such introns tested individually gave the desired specific disruption, some by switching to an alternate retrohoming mechanism targeting single-stranded DNA and using a nascent lagging DNA strand to prime reverse transcription.
机译:乳酸乳球菌LI.LtrB II类内含子通过反向剪接成双链DNA靶位点的一条链而逆行,而内含子编码的蛋白质裂解了相反的链,并用它引发插入的内含子RNA的逆转录。蛋白质和内含子RNA在核糖核蛋白颗粒中起作用,许多DNA靶序列可通过内含子RNA的碱基配对识别。因此,可以通过取代内含子RNA中的特定或随机核苷酸残基,对II组内含子进行重新编程,以插入到特定或随机的DNA位点中。在这里,我们显示使用这种随机插入的LI.LtrB内含子获得的大肠杆菌基因破坏文库包含最可行的大肠杆菌基因破坏。此外,每个插入的内含子都通过其独特的碱基配对区域靶向特定位点,并且在大多数情况下,可以通过PCR进行回收,并未经修饰即可获得所需的单个破坏子。此外,我们鉴定了内含子的一个子集,插入在缺乏T + 5的位点上,T + 5是对第二条链断裂至关重要的核苷酸残基。单独测试的所有此类内含子均提供了所需的特异性破坏,其中一些是通过切换到靶向单链DNA的另一种反向同源机制,并使用新生的落后DNA链引发逆转录而实现的。

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