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Integrated genomic analysis identifies recurrent mutations and evolution patterns driving the initiation and progression of follicular lymphoma

机译:整合的基因组分析可识别导致滤泡性淋巴瘤发生和发展的反复突变和进化模式

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Follicular lymphoma is an incurable malignancy1, with transformation to an aggressive subtype representing a critical event during disease progression. Here we performed whole-genome or whole-exome sequencing on 10 follicular lymphoma-transformed follicular lymphoma pairs followed by deep sequencing of 28 genes in an extension cohort, and we report the key events and evolutionary processes governing tumor initiation and transformation. Tumor evolution occurred through either a 'rich' or 'sparse' ancestral common progenitor clone (CPC). We identified recurrent mutations in linker histone, JAK-STAT signaling, NF-kB signaling and B cell developmental genes. Longitudinal analyses identified early driver mutations in chromatin regulator genes (CREBBP, EZH2 and KMT2D (MLL2)), whereas mutations in EBF1 and regulators of NF-kB signaling (MYD88 and TNFAIP3) were gained at transformation. Collectively, this study provides new insights into the genetic basis of follicular lymphoma and the clonal dynamics of transformation and suggests that personalizing therapies to target key genetic alterations in the CPC represents an attractive therapeutic strategy.
机译:滤泡性淋巴瘤是一种无法治愈的恶性肿瘤1,其转变为侵略性亚型,代表疾病进展期间的关键事件。在这里,我们对10个滤泡性淋巴瘤转化的滤泡性淋巴瘤对进行了全基因组或全外显子组测序,然后对扩展队列中的28个基因进行了深度测序,并报告了控制肿瘤发生和转化的关键事件和进化过程。肿瘤的发生是通过“丰富”或“稀疏”的祖先祖先克隆(CPC)发生的。我们确定了接头组蛋白,JAK-STAT信号,NF-kB信号和B细胞发育基因中的复发突变。纵向分析确定了染色质调节基因(CREBBP,EZH2和KMT2D(MLL2))的早期驱动突变,而转化时获得了EBF1突变和NF-kB信号调节因子(MYD88和TNFAIP3)。总的来说,这项研究为滤泡性淋巴瘤的遗传基础和转化的克隆动力学提供了新的见解,并提出了针对CPC中关键基因改变的个性化治疗代表了一种有吸引力的治疗策略。

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