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Quantitative amplification of single-stranded DNA (QAOS) demonstrates that cdc13-1 mutants generate ssDNA in a telomere to centromere direction

机译:单链DNA(QAOS)的定量扩增表明,cdc13-1突变体在端粒到着丝粒方向上生成ssDNA

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We have developed a method that allows quantitative amplification of single-stranded DNA (QAOS) in a sample that is primarily double-stranded DNA (dsDNA). Single-stranded DNA (ssDNA) is first captured by annealing a tagging primer at low temperature. Primer extension follows to create a novel, ssDNA-dependent, tagged molecule that can be detected by PCR. Using QAOS levels of between 0.2 and 100% ssDNA can be accurately quantified. We have used QAOS to characterise ssDNA levels at three loci near the right telomere of chromosome V in budding yeast cdc13-1 mutants. Our results confirm and extend previous studies which demonstrate that when Cdc13p, a telomere-binding protein, is disabled, loci close to the telomere become single stranded whereas centromere proximal sequences do not. In contrast to an earlier model, our new results are consistent with a model in which a RAD24-dependent, 5' to 3' exonuclease moves from the telomere toward the centromere in cdc13-1 mutants. QAOS has been adapted, using degenerate tagging primers, to preferentially amplify all ssDNA sequences within samples that are primarily dsDNA. This approach may be useful for identifying ssDNA sequences associated with physiological or pathological states in other organisms.
机译:我们开发了一种方法,该方法可以定量扩增主要为双链DNA(dsDNA)的样品中的单链DNA(QAOS)。首先通过在低温下退火标签引物来捕获单链DNA(ssDNA)。随后进行引物延伸以产生可以通过PCR检测的新颖的,依赖于ssDNA的标记分子。使用QAOS,可以准确定量介于0.2和100%ssDNA之间的水平。我们已经使用QAOS来表征萌芽酵母cdc13-1突变体中靠近V染色体右端粒的三个基因座的ssDNA水平。我们的结果证实并扩展了先前的研究,这些研究表明,当Cdc13p(一种端粒结合蛋白)被禁用时,靠近端粒的基因座变为单链,而着丝粒的近端序列则不会。与早期模型相反,我们的新结果与cd2413-1突变体中RAD24依赖的5'至3'核酸外切酶从端粒移向着丝粒的模型相符。使用简并标签引物对QAOS进行了改造,以优先扩增样品中主要是dsDNA的所有ssDNA序列。该方法对于鉴定与其他生物中的生理或病理状态相关的ssDNA序列可能是有用的。

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