Noll W W, Collins M
Proc Natl Acad Sci U S A. 1987 May;84(10):3339-43. doi: 10.1073/pnas.84.10.3339.
Single base pair differences between otherwise identical DNA molecules can result in altered melting behavior detectable by denaturing gradient gel electrophoresis. We have developed a simplified procedure for using denaturing gradient gel electrophoresis to detect base pair changes in genomic DNA. Genomic DNA is digested with restriction enzymes and hybridized in solution to labeled single-stranded probe DNA. The excess probe is then hybridized to complementary phage M13 template DNA, and the reaction mixture is electrophoresed on a denaturing gradient gel. Only the genomic DNA probe hybrids migrate into the gel. Differences in hybrid mobility on the gel indicate base pair changes in the genomic DNA. We have used this technique to identify two polymorphic sites within a 1.2-kilobase region of human chromosome 20. This approach should greatly facilitate the identification of DNA polymorphisms useful for gene linkage studies and the diagnosis of genetic diseases.
在其他方面完全相同的DNA分子之间,单碱基对差异可导致解链行为改变,这种改变可通过变性梯度凝胶电泳检测到。我们开发了一种简化程序,利用变性梯度凝胶电泳检测基因组DNA中的碱基对变化。基因组DNA用限制性内切酶消化,并在溶液中与标记的单链探针DNA杂交。然后将过量的探针与互补的噬菌体M13模板DNA杂交,反应混合物在变性梯度凝胶上进行电泳。只有基因组DNA-探针杂交体迁移到凝胶中。凝胶上杂交体迁移率的差异表明基因组DNA中的碱基对发生了变化。我们已用该技术在人类20号染色体的一个1.2千碱基区域内鉴定出两个多态性位点。这种方法应极大地有助于鉴定对基因连锁研究和遗传疾病诊断有用的DNA多态性。