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生成地高辛配基掺入探针以提高DNA检测灵敏度。

Generation of digoxigenin-incorporated probes to enhance DNA detection sensitivity.

作者信息

Lai Tsung-Po, Wright Woodring E, Shay Jerry W

机构信息

Department of Cell Biology, University of Texas Southwestern Medical Center, Dallas, TX.

出版信息

Biotechniques. 2016 Jun 1;60(6):306-9. doi: 10.2144/000114427. eCollection 2016.

Abstract

Telomere length in humans has been correlated with cancer and age-related diseases. The standard method to measure telomere length relies on Southern blot analysis with radioactively or non-radioactively labeled probes containing several telomeric DNA repeats. However, this approach requires relatively large amounts of genomic DNA, making it difficult to measure telomere length when a limited amount of sample is available. Here, we describe a non-radioactive labeling method that uses 3' fill-in combined with lambda exonuclease digestion to incorporate one or more digoxigenin (DIG) molecules into bridged nucleic acid (BNA)-containing oligonucleotides (ONTs). Using our method, we were able to generate probes to detect both C- and G-rich telomeric DNA strands. Compared with commercially available DIG-labeled telomere probes, probes generated using this new approach significantly enhance the sensitivity of telomere length measurements.

摘要

人类的端粒长度与癌症及年龄相关疾病有关。测量端粒长度的标准方法依赖于使用含有多个端粒DNA重复序列的放射性或非放射性标记探针进行Southern印迹分析。然而,这种方法需要相对大量的基因组DNA,当样本量有限时,很难测量端粒长度。在此,我们描述了一种非放射性标记方法,该方法使用3'补平结合λ核酸外切酶消化,将一个或多个地高辛(DIG)分子掺入含桥连核酸(BNA)的寡核苷酸(ONT)中。使用我们的方法,我们能够生成用于检测富含C和富含G的端粒DNA链的探针。与市售的DIG标记端粒探针相比,使用这种新方法生成的探针显著提高了端粒长度测量的灵敏度。

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