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结构变异塑造多发性骨髓瘤的基因组景观和临床结局。

Structural variants shape the genomic landscape and clinical outcome of multiple myeloma.

机构信息

Department of Biomedical Informatics, University of Arkansas for Medical Sciences, Little Rock, AR, USA.

Winthrop P. Rockefeller Cancer Institute, University of Arkansas for Medical Sciences, Little Rock, AR, USA.

出版信息

Blood Cancer J. 2022 May 30;12(5):85. doi: 10.1038/s41408-022-00673-x.

Abstract

Deciphering genomic architecture is key to identifying novel disease drivers and understanding the mechanisms underlying myeloma initiation and progression. In this work, using the CoMMpass dataset, we show that structural variants (SV) occur in a nonrandom fashion throughout the genome with an increased frequency in the t(4;14), RB1, or TP53 mutated cases and reduced frequency in t(11;14) cases. By mapping sites of chromosomal rearrangements to topologically associated domains and identifying significantly upregulated genes by RNAseq we identify both predicted and novel putative driver genes. These data highlight the heterogeneity of transcriptional dysregulation occurring as a consequence of both the canonical and novel structural variants. Further, it shows that the complex rearrangements chromoplexy, chromothripsis and templated insertions are common in MM with each variant having its own distinct frequency and impact on clinical outcome. Chromothripsis is associated with a significant independent negative impact on clinical outcome in newly diagnosed cases consistent with its use alongside other clinical and genetic risk factors to identify prognosis.

摘要

解析基因组结构对于鉴定新的疾病驱动因子以及理解多发性骨髓瘤起始和进展的机制至关重要。在这项工作中,我们使用 CoMMpass 数据集表明,结构变体(SV)在整个基因组中以非随机的方式发生,在 t(4;14)、RB1 或 TP53 突变的情况下发生频率增加,而在 t(11;14)的情况下发生频率降低。通过将染色体重排的位点映射到拓扑关联结构域,并通过 RNAseq 鉴定明显上调的基因,我们确定了既有预测性又有新的潜在驱动基因。这些数据突出了由于经典和新型结构变体而导致的转录失调的异质性。此外,它表明复杂的重排复合物、染色体重排和模板插入在 MM 中很常见,每种变体都有其独特的频率和对临床结果的影响。染色体重排与新诊断病例的临床结果显著独立的负面影响相关,这与其与其他临床和遗传风险因素一起用于识别预后相一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a6e/9151656/bee5010abfc4/41408_2022_673_Fig1_HTML.jpg

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