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A general cloning system to selectively isolate any eukaryotic or prokaryotic genomic region in yeast

机译:选择性克隆酵母中任何真核或原核基因组区域的通用克隆系统

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Background Transformation-associated recombination (TAR) cloning in yeast is a unique method for selective isolation of large chromosomal fragments or entire genes from complex genomes. The technique involves homologous recombination, during yeast spheroplast transformation, between genomic DNA and a TAR vector that has short (~ 60 bp) 5' and 3' gene targeting sequences (hooks). Result TAR cloning requires that the cloned DNA fragment carry at least one autonomously replicating sequence (ARS) that can function as the origin of replication in yeast, which prevents wide application of the method. In this paper, we describe a novel TAR cloning system that allows isolation of genomic regions lacking yeast ARS-like sequences. ARS is inserted into the TAR vector along with URA3 as a counter-selectable marker. The hooks are placed between the TATA box and the transcription initiation site of URA3. Insertion of any sequence between hooks results in inactivation of URA3 expression. That inactivation confers resistance to 5-fluoroorotic acid, allowing selection of TAR cloning events against background vector recircularization events. Conclusion The new system greatly expands the area of application of TAR cloning by allowing isolation of any chromosomal region from eukaryotic and prokaryotic genomes regardless of the presence of autonomously replicating sequences.
机译:背景技术酵母中的转化相关重组(TAR)克隆是从复杂基因组中选择性分离大染色体片段或整个基因的独特方法。该技术涉及在酵母原生质球转化过程中,基因组DNA与具有短(〜60 bp)5'和3'基因靶向序列(钩)的TAR载体之间的同源重组。结果TAR克隆需要克隆的DNA片段带有至少一个自主复制序列(ARS),该序列可以作为酵母中复制的起点,从而阻碍了该方法的广泛应用。在本文中,我们描述了一种新颖的TAR克隆系统,该系统可分离缺乏酵母ARS样序列的基因组区域。 ARS与URA3一起插入TAR向量中,作为可逆选择标记。钩子放置在TATA盒和URA3的转录起始位点之间。钩子之间插入任何序列会导致URA3表达失活。该失活赋予了对5-氟乳清酸的抗性,从而允许针对背景载体重新环化事件选择TAR克隆事件。结论该新系统通过允许从真核和原核基因组中分离出任何染色体区域而无视自主复制序列的存在,大大扩展了TAR克隆的应用领域。

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