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用罗丹明、荧光素和香豆素标记的DNA进行多重和灵敏的荧光原位杂交。

Multiple and sensitive fluorescence in situ hybridization with rhodamine-, fluorescein-, and coumarin-labeled DNAs.

作者信息

Wiegant J, Wiesmeijer C C, Hoovers J M, Schuuring E, d'Azzo A, Vrolijk J, Tanke H J, Raap A K

机构信息

Department of Cytochemistry and Cytometry, Leiden University, The Netherlands.

出版信息

Cytogenet Cell Genet. 1993;63(1):73-6. doi: 10.1159/000133507.

Abstract

We have tested the use of several newly developed red, green, and blue fluorescent dUTPs in direct, multiple, and sensitive fluorescence in situ hybridization procedures. Among the ones tested, the tetramethylrhodamine-dUTP proved to give the best sensitivity; using conventional epifluorescence microscopy, cosmids could be visualized with a hybridization efficiency of 90%. Fluorescein-dUTP permitted visual cosmid detection with 50% efficiency, and, to the human eye, the green signals appeared less bright. With a blue fluorescent coumarin-labeled dUTP, only highly repetitive target sequences could be visualized directly. Imaging with a cooled CCD (charged coupled device) camera for prolonged integration times permitted localization of small targets using probes labeled with red and green fluorochromes. Visualization of a 1.8-kb single copy sequence with a rhodamine-labeled cDNA proved feasible. The strategy of identifying hybridization sites with multiple colors was successfully applied for multiple hybridizations to repetitive and unique targets, using the red and green labels directly and the biotin label indirectly with one layer of avidin-coumarin.

摘要

我们已经在直接、多重和灵敏的荧光原位杂交实验中测试了几种新开发的红色、绿色和蓝色荧光dUTP的使用情况。在所测试的荧光dUTP中,四甲基罗丹明-dUTP的灵敏度最高;使用传统的落射荧光显微镜,黏粒的杂交效率可达90%,可以清晰观察到。荧光素-dUTP的黏粒检测效率为50%,而且在人眼看来,绿色信号没那么亮。使用蓝色荧光香豆素标记的dUTP时,只有高度重复的靶序列才能直接观察到。使用冷却的CCD(电荷耦合器件)相机进行长时间积分成像,能够定位用红色和绿色荧光染料标记的探针的小靶标。用罗丹明标记的cDNA观察到1.8 kb的单拷贝序列是可行的。利用红色和绿色直接标记以及生物素间接标记(通过一层抗生物素蛋白-香豆素),用多种颜色识别杂交位点的策略成功应用于对重复和单一靶标的多重杂交。

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