Betanzos-Cabrera Gabriel, Harker Brent W, Doktycz Mitchel J, Weber James L, Beattie Kenneth L
Area Académica de Nutrición, Instituto de Ciencias de la Salud, Universidad Autónoma del Estado de Hidalgo, Hidalgo 42000, Mexico.
Mol Biotechnol. 2008 Feb;38(2):145-53. doi: 10.1007/s12033-007-9004-9. Epub 2007 Oct 12.
The development and critical evaluation of new technologies for identifying genetic polymorphisms will rapidly accelerate the discovery and diagnosis of disease-related genes. We report a novel way for distinguishing a new class of human DNA polymorphisms, short insertion/deletion polymorphisms (indels). A sensor with cylindrical pores named channel glass in combination with tandem hybridization, which uses a 5'-fluorescent labeled stacking probe and microarray-based short allele-specific oligonucleotide (capture probe) was investigated. This methodology allows indels to be detected individually and rapidly with small quantities of target DNA. This establishes a reliable quantitative test. Approaches for simultaneously hybridizing different targets to arrayed probes, designed to detect various indels in parallel, were examined. Five markers were consistently detected in a single hybridization. Possible factors impeding the hybridization reaction process are discussed.
用于识别基因多态性的新技术的开发和批判性评估将迅速加速疾病相关基因的发现和诊断。我们报告了一种区分新型人类DNA多态性——短插入/缺失多态性(indels)的新方法。研究了一种带有圆柱形孔的名为通道玻璃的传感器与串联杂交相结合的方法,该方法使用5'-荧光标记的堆积探针和基于微阵列的短等位基因特异性寡核苷酸(捕获探针)。这种方法能够使用少量靶DNA单独且快速地检测indels。这建立了一种可靠的定量检测方法。还研究了将不同靶标同时与排列好的探针杂交的方法,这些探针旨在并行检测各种indels。在一次杂交中始终能检测到五个标记。讨论了阻碍杂交反应过程的可能因素。