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利用颤抖小鼠和恒河猴毛发根部进行球状细胞脑白质营养不良的分子信标基因分型

Molecular beacon genotyping for globoid cell leukodystrophy from hair roots in the twitcher mouse and rhesus macaque.

作者信息

Terrell Kimberly A, Rasmussen Terri A, Trygg Cyndi, Bunnell Bruce A, Buck Wayne R

机构信息

Department of Biology, University of New Orleans, 2000 Lakeshore Drive, New Orleans, LA 70148, USA.

出版信息

J Neurosci Methods. 2007 Jun 15;163(1):60-6. doi: 10.1016/j.jneumeth.2007.02.019. Epub 2007 Feb 25.

Abstract

Rapid and accurate genotype determination is ideal for the maintenance of breeding colonies of laboratory animal models of genetic disease. The rhesus macaque and murine (twitcher) models of globoid cell leukodystrophy have a dinucleotide deletion or single nucleotide substitution, respectively, which abolish ceramide beta-galactosidase activity and are authentic models of Krabbe disease. We report a molecular beacon PCR assay for each species which allows unambiguous determination of the genotype in under 4h. The assay works reliably with DNA extracted from hair roots using Chelex-100 in a 20 min, 100 degrees C incubation. We demonstrate that genotyping from hair roots is a preferred alternative to collecting blood or tissue for DNA extraction because it reduces animal distress, uses an inexpensive reagent, and is simpler and faster. Following amplification on a standard thermocycler with a 96-well plate format, these molecular beacon assays can be read on a standard laboratory fluorescent plate reader, eliminating the need to use a real-time thermocycler or to open the plate for subsequent restriction enzyme digestion and gel electrophoresis. The multiplexed ratio of fluorescence from wild-type- and mutant-specific beacons reporting at 560 nm and 535 nm wavelengths is distinct for each genotype.

摘要

快速准确的基因型测定对于维持遗传性疾病实验动物模型的繁殖群体非常理想。恒河猴和小鼠(抽搐症)球状细胞脑白质营养不良模型分别存在二核苷酸缺失或单核苷酸替换,这会消除神经酰胺β-半乳糖苷酶活性,是典型的克拉伯病模型。我们报告了针对每个物种的分子信标PCR检测方法,该方法可在4小时内明确确定基因型。该检测方法使用Chelex-100从发根中提取DNA,在100℃孵育20分钟后能可靠地发挥作用。我们证明,从发根进行基因分型是采集血液或组织进行DNA提取的一种更好选择,因为它能减少动物痛苦,使用廉价试剂,且更简单快速。在标准的96孔板格式热循环仪上进行扩增后,这些分子信标检测可在标准实验室荧光酶标仪上读取,无需使用实时热循环仪或打开板进行后续的限制性内切酶消化和凝胶电泳。在560nm和535nm波长处报告的野生型和突变型特异性信标的荧光多重比率对于每种基因型都是不同的。

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