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Array Comparative Genomic Hybridization (Array CGH) for Detection of Genomic Copy Number Variants
Published on: February 21, 2015
Modified array-based comparative genomic hybridization detects cryptic and variant PML-RARA rearrangements in acute
Aaron M Gruver1, Heesun J Rogers, James R Cook
1Pathology and Laboratory Medicine Institute, Cleveland Clinic, Cleveland, OH 44195, USA. gruvera@ccf.org
Abstract:
Acute promyelocytic leukemia (APL) is typically defined at the molecular level by a reciprocal translocation of the promyelocytic leukemia (PML) and retinoic acid receptor α (RARA) genes. An accurate diagnosis of APL is critical for appropriate choice of therapy and prognostic assessment. Cryptic and variant rearrangements in APL are discoverable by a variety of molecular methods including fluorescence in situ hybridization (FISH), reverse transcriptase polymerase chain reaction, or gene sequencing. Rare reports of FISH-negative APL harboring cryptic rearrangements of PML-RARA detected by reverse transcriptase polymerase chain reaction or sequencing have been described. Here, we describe the detection of cryptic or variant PML-RARA rearrangements by translocation-based comparative genomic hybridization (tCGH), a recently described modification of traditional CGH technology that facilitates the detection of balanced translocations by means of the linear amplification of a potential translocation breakpoint region(s), in 2 unusual cases of APL. One tumor lacked detectable t(15;17) by karyotype and FISH, and the other tumor lacked the typical morphologic and immunophenotypic features of APL and had a variant 3-way translocation involving PML and RARA. PML-RARA translocations were identified by tCGH in both cases providing confirmation of the diagnosis of APL. These data emphasize the benefit of using complementary molecular methods including tCGH for detecting cryptic and variant PML-RARA translocations in unusual cases of APL.
Insights
Translocation-based comparative genomic hybridization (tCGH) successfully identified cryptic or variant PML-RARA rearrangements in two unusual acute promyelocytic leukemia (APL) cases. This highlights tCGH as a valuable tool for diagnosing APL when standard methods fail.
Area of Science:
- Hematology
- Molecular Biology
- Genetics
Background:
- Acute promyelocytic leukemia (APL) diagnosis relies on identifying specific PML-RARA gene rearrangements.
- Standard diagnostic methods like karyotyping and FISH may miss cryptic or variant rearrangements.
Observation:
- Two unusual APL cases with cryptic or variant PML-RARA rearrangements were investigated.
- One case lacked detectable t(15;17) by karyotype and FISH; the other had atypical features and a 3-way translocation.
Findings:
- Translocation-based comparative genomic hybridization (tCGH) detected PML-RARA rearrangements in both APL cases.
- tCGH confirmed the APL diagnosis in these challenging cases where conventional methods were insufficient.
Implications:
- tCGH is a powerful complementary molecular technique for diagnosing APL with unusual genetic alterations.
- Accurate detection of PML-RARA translocations is crucial for appropriate APL treatment and prognosis.

