Bailey S M, Meyne J, Cornforth M N, McConnell T S, Goodwin E H
Life Sciences Division, Los Alamos National Laboratory, NM 87545, USA.
Cytogenet Cell Genet. 1996;75(4):248-53. doi: 10.1159/000134494.
A new approach for detecting chromosomal inversions, based on the recently developed technique of chromosome orientation and direction fluorescence in situ hybridization (COD-FISH), is presented. COD-FISH is a strand-specific modification of standard FISH technology which allows the hybridization of single-stranded probes to one, and only one, chromatid of a metaphase chromosome. It can be used to determine the absolute 5'-to-3' direction of DNA target sequences with respect to the short-to-long arm direction of a given chromosome. Since an inversion reverses the orientation of DNA sequences within the inverted region, an inversion becomes detectable as a "switch" in probe signal from one chromatid to the other, when compared to a reference probe outside of the inverted region. Pericentric inversions in chromosomes 1, 8, 10, and X, which had previously been identified by chromosome banding, were analyzed by the COD-FISH technique. The results presented here demonstrate that COD-FISH can be used for the detection of pericentric inversions and that, in some instances, it provides additional information not obtainable by more conventional methods of cytogenetic analysis. Practical limitations of the COD-FISH technique are also discussed.
本文介绍了一种基于最近开发的染色体定向和方向荧光原位杂交(COD-FISH)技术检测染色体倒位的新方法。COD-FISH是标准FISH技术的一种链特异性修饰,它允许单链探针与中期染色体的一条且仅一条染色单体杂交。它可用于确定DNA靶序列相对于给定染色体短臂到长臂方向的绝对5'到3'方向。由于倒位会反转倒位区域内DNA序列的方向,因此与倒位区域外的参考探针相比,倒位可作为探针信号从一条染色单体到另一条染色单体的“切换”而被检测到。通过COD-FISH技术分析了先前通过染色体显带鉴定的1号、8号、10号和X染色体的臂间倒位。这里给出的结果表明,COD-FISH可用于检测臂间倒位,并且在某些情况下,它提供了通过更传统的细胞遗传学分析方法无法获得的额外信息。还讨论了COD-FISH技术的实际局限性。