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Nonradioactive method to detect native single-stranded G-tails on yeast telomeres using a modified Southern blot protocol

机译:使用改良的Southern印迹方案检测酵母端粒上天然单链G尾的非放射性方法

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摘要

Because of their low abundance and short length, telomeric single-stranded extensions have not traditionally been assessed by Southern blot analysis. Instead, most methods have relied on hybridizing radioactively labeled oligonucleotide probes to electrophoresed DNA within agarose gels. Here we describe a rapid and nonradioactive Southern blot derived method to transfer and detect telomeric single-stranded G-rich overhangs (G-tails) under nondenaturing (native) conditions, using Saccharomyces cerevisiae DNA. Restriction enzyme digested chromosomal DNA is separated by agarose gel electrophoresis, transferred onto a charged membrane by electroblotting under nondenaturing conditions, and probed with a digoxigenin (DIG)-labeled oligonucleotide. Compared with the prolonged film exposure required to detect radioactive probes, detection of short single-strand G-tails with this method takes mere minutes. Furthermore, following detection of the single-stranded G-tails, the DNA on the membrane can be denatured and reprobed using conventional hybridization and detection methods.
机译:由于其低丰度和短长度,端粒单链延伸传统上没有通过Southern印迹分析进行评估。相反,大多数方法都依赖于将放射性标记的寡核苷酸探针与琼脂糖凝胶中的电泳DNA杂交。在这里,我们描述了一种快速且非放射性的Southern印迹衍生方法,使用酿酒酵母DNA在非变性(天然)条件下转移和检测端粒单链富含G的突出端(G尾)。通过琼脂糖凝胶电泳分离限制性酶消化的染色体DNA,在非变性条件下通过电印迹将其转移到带电膜上,并用洋地黄毒苷(DIG)标记的寡核苷酸进行探测。与检测放射性探针所需的长时间胶片曝光相比,使用这种方法检测短的单链G尾巴仅需几分钟。此外,在检测单链G-尾巴之后,可以使用常规的杂交和检测方法使膜上的DNA变性并重新探测。

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