Durm M, Haar F M, Hausmann M, Ludwig H, Cremer C
Institut für Angewandte Physik, Universität Heidelberg.
Z Naturforsch C J Biosci. 1996 Mar-Apr;51(3-4):253-61. doi: 10.1515/znc-1996-3-418.
A rapid FISH (fluorescence in situ hybridization) technique (Fast-FISH) for quantitative microscopy has been recently introduced. For highly repetitive DNA probes the hybridization (renaturation) time and the number of necessary washing steps were reduced considerably by omitting formamide or equivalent denaturing chemical agents. Due to low stringency conditions major and minor binding sites of the probes used showed visible FISH signals well suited for quantitative image-microscopy. The discrimination of minor and major binding sites was possible by automated image-processing. Here, a further, quantitative optimization of the Fast-FISH technique is described that allows to clearly discriminate major and minor binding sites of alpha-satellite probes by an easy image classification parameter. With respect to the optimization it was necessary to verify two sensitive parameters (hybridization time and temperature) of the given rapid FISH protocol. As examples the systematic optimization for the two probes D12Z2 (major binding site on the centromere of chromosome 12) and D8Z2 (major binding site on the centromere of chromosome 8) are shown. The optimal hybridization conditions concerning rapidness and quality of chromosome morphology were obtained using a hybridization temperature of 70 degrees C and a hybridization time of 60 min. For these conditions major and minor binding sites were clearly discriminated by the intensity maximum Smax of the corresponding FISH-spots.
最近推出了一种用于定量显微镜检查的快速荧光原位杂交(FISH)技术(快速FISH)。对于高度重复的DNA探针,通过省略甲酰胺或等效的变性化学试剂,杂交(复性)时间和必要的洗涤步骤数量大大减少。由于低严格条件,所用探针的主要和次要结合位点显示出适用于定量图像显微镜检查的可见FISH信号。通过自动图像处理可以区分次要和主要结合位点。在此,描述了快速FISH技术的进一步定量优化,其允许通过简单的图像分类参数清楚地区分α卫星探针的主要和次要结合位点。关于优化,有必要验证给定快速FISH方案的两个敏感参数(杂交时间和温度)。作为示例,展示了针对两种探针D12Z2(12号染色体着丝粒上的主要结合位点)和D8Z2(8号染色体着丝粒上的主要结合位点)的系统优化。使用70℃的杂交温度和60分钟的杂交时间获得了关于染色体形态的快速性和质量的最佳杂交条件。对于这些条件,通过相应FISH斑点的强度最大值Smax清楚地区分了主要和次要结合位点。