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Clonal Evolution Revealed by Whole Genome Sequencing in a Case of Primary Myelofibrosis Transformed to Secondary Acute Myeloid Leukemia

机译:全基因组测序揭示原发性骨髓纤维化转化为继发性急性髓性白血病的案例的克隆进化。

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摘要

Clonal architecture in myeloproliferative neoplasms (MPNs) is poorly understood. Here we report genomic analyses of a patient with primary myelofibrosis (PMF) transformed to secondary acute myeloid leukemia (sAML). Whole genome sequencing (WGS) was performed on PMF and sAML diagnosis samples, with skin included as a germline surrogate. Deep sequencing validation was performed on the WGS samples and an additional sample obtained during sAML remission/relapsed PMF. Clustering analysis of 649 validated somatic single nucleotide variants revealed four distinct clonal groups, each including putative driver mutations. The first group (including JAK2 and U2AF1), representing the founding clone, included mutations with high frequency at all three disease stages. The second clonal group (including MYB) was present only in PMF, suggesting the presence of a clone that was dispensable for transformation. The third group (including ASXL1) contained mutations with low frequency in PMF and high frequency in subsequent samples, indicating evolution of the dominant clone with disease progression. The fourth clonal group (including IDH1 and RUNX1) was acquired at sAML transformation and was predominantly absent at sAML remission/relapsed PMF. Taken together, these findings illustrate the complex clonal dynamics associated with disease evolution in MPNs and sAML.
机译:骨髓增生性肿瘤(MPNs)的克隆结构了解甚少。在这里,我们报告了原发性骨髓纤维化(PMF)转变为继发性急性髓性白血病(sAML)的患者的基因组分析。对PMF和sAML诊断样品进行了全基因组测序(WGS),其中皮肤作为种系替代品。对WGS样品进行了深度测序验证,并在sAML缓解/复发PMF期间获得了其他样品。对649个经过验证的体细胞单核苷酸变异体进行的聚类分析揭示了四个不同的克隆组,每个克隆组均包含推定的驱动程序突变。代表创始克隆的第一组(包括JAK2和U2AF1)包括在所有三个疾病阶段的高频率突变。第二个克隆组(包括MYB)仅存在于PMF中,这表明存在可用于转化的克隆。第三组(包括ASXL1)包含PMF低频突变和后续样本高频突变,表明优势克隆随着疾病进展而进化。第四个克隆组(包括IDH1和RUNX1)是在sAML转化后获得的,而在sAML缓解/ PMF复发时主要不存在。综上所述,这些发现说明了与MPN和sAML中疾病演变相关的复杂克隆动力学。

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