Weier H U, Polikoff D, Fawcett J J, Greulich K M, Lee K H, Cram S, Chapman V M, Gray J W
Division of Molecular Cytometry, School of Medicine, University of California, San Francisco 94143-0808.
Genomics. 1994 Jun;21(3):641-4. doi: 10.1006/geno.1994.1326.
Mouse metaphase chromosomes were purified by flow sorting from the murine fibroblast cell line Mus spretus clone 5A. We sorted chromosomes that fell into five individual peaks based on the Hoechst 33258/chromomycin A3 DNA histogram: three peaks corresponding to the least amount of DNA and two peaks representing chromosomes with the most DNA content. This is the first example of the successful application of bivariate flow karyotyping to murine chromosome sorting. We then applied primer-directed in vitro DNA amplification using the polymerase chain reaction (PCR) to generate and label larger amounts of chromosome-specific DNA. In situ hybridization showed specific binding of the PCR products to mouse chromosomes Y, 19, 18, 3, and X as well as chromosomes 1 and 2. The combination of chromosome sorting from the M. spretus cell line and PCR proved to be highly valuable for generation of pools of DNA fragments that exhibit specific binding to mouse chromosomes and can be used to identify and delineate mouse metaphase chromosomes.
从小鼠成纤维细胞系小家鼠克隆5A中通过流式细胞分选法纯化小鼠中期染色体。基于Hoechst 33258/放线菌素A3 DNA直方图,我们分选了落入五个单独峰的染色体:三个峰对应最少的DNA量,两个峰代表具有最多DNA含量的染色体。这是双变量流式核型分析成功应用于小鼠染色体分选的首个实例。然后,我们使用聚合酶链反应(PCR)进行引物定向体外DNA扩增,以生成并标记大量染色体特异性DNA。原位杂交显示PCR产物与小鼠染色体Y、19、18、3和X以及染色体1和2特异性结合。从小家鼠细胞系中进行染色体分选与PCR相结合,被证明对于生成与小鼠染色体具有特异性结合且可用于识别和描绘小鼠中期染色体的DNA片段库非常有价值。