Tembrink Marco, Gerding Wanda Maria, Wieczorek Stefan, Mika Thomas, Schroers Roland, Nguyen Huu Phuc, Vangala Deepak Ben, Nilius-Eliliwi Verena
Department of Human Genetics, Ruhr-University Bochum, 44801 Bochum, Germany.
MVZ Dr. Eberhard & Partner Dortmund GbR (ÜBAG), 44137 Dortmund, Germany.
Cancers (Basel). 2023 May 27;15(11):2942. doi: 10.3390/cancers15112942.
Optical genome mapping (OGM) recently has demonstrated the potential to improve genetic diagnostics in acute myeloid leukemia (AML). In this study, OGM was utilized as a tool for the detection of genome-wide structural variants and disease monitoring. A previously unrecognized fusion was detected in an adult patient with secondary AML. OGM identified the fusion of to as result of a complex structural rearrangement between chromosomes 1 and 11. A pipeline for the measurement of rare structural variants (Rare Variant Pipeline, Bionano Genomics, San Diego, CA, USA) was used for detection. As and other fusions are relevant for disease classification, this demonstrates the necessity for methods such as OGM for cytogenetic diagnostics in AML. Furthermore, other structural variants showed discordant variant allele frequencies at different time points over the course of the disease and treatment pressure, indicating clonal evolution. These results support OGM to be a valuable tool for primary diagnostics in AML as well as longitudinal testing for disease monitoring and deepening our understanding of genetically heterogenous diseases.
光学基因组图谱(OGM)最近已显示出改善急性髓系白血病(AML)基因诊断的潜力。在本研究中,OGM被用作检测全基因组结构变异和疾病监测的工具。在一名继发性AML成年患者中检测到一种先前未被识别的融合。OGM确定1号和11号染色体之间复杂结构重排导致了[具体基因1]与[具体基因2]的融合。使用了一种用于测量罕见结构变异的流程(罕见变异流程,美国加利福尼亚州圣地亚哥的Bionano Genomics公司)进行检测。由于[具体基因1]与[具体基因2]的融合以及其他融合与疾病分类相关,这证明了OGM等方法对于AML细胞遗传学诊断的必要性。此外,其他结构变异在疾病和治疗过程的不同时间点显示出不一致的变异等位基因频率,表明存在克隆进化。这些结果支持OGM成为AML初诊以及疾病监测纵向检测的有价值工具,并加深我们对基因异质性疾病的理解。