Detection of <i>bcr</i> - <i>abl</i> Fusion in Chronic Myelogeneous Leukemia by in Situ Hybridization

Douglas Tkachuk(Lawrence Livermore National Laboratory), C A Westbrook(Lawrence Livermore National Laboratory), Michael Andreeff(Lawrence Livermore National Laboratory), T. A. Donlon(Stanford University), Michael L. Cleary(Stanford University), Kaveri Suryanarayan(Stanford University), M Homge(Memorial Sloan Kettering Cancer Center), Arlene Redner(Memorial Sloan Kettering Cancer Center), Joe W. Gray(Lawrence Livermore National Laboratory), D. Pinkel(Lawrence Livermore National Laboratory)
Science
October 26, 1990
Cited by 385

Abstract

Chronic myelogeneous leukemia (CML) is genetically characterized by fusion of the bcr and abl genes on chromosomes 22 and 9, respectively. In most cases, the fusion involves a reciprocal translocation t(9;22)(q34;q11), which produces the cytogenetically distinctive Philadelphia chromosome (Ph 1 ). Fusion can be detected by Southern (DNA) analysis or by in vitro amplification of the messenger RNA from the fusion gene with polymerase chain reaction (PCR). These techniques are sensitive but cannot be applied to single cells. Two-color fluorescence in situ hybridization (FISH) was used with probes from portions of the bcr and abl genes to detect the bcr - abl fusion in individual blood and bone marrow cells from six patients. The fusion event was detected in all samples analyzed, of which three were cytogenetically Ph 1 -negative. One of the Ph 1 -negative samples was also PCR-negative. This approach is fast and sensitive, and provides potential for determining the frequency of the abnormality in different cell lineages.


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