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APOBEC3G 失调导致多发性骨髓瘤中的 DNA 损伤和基因组不稳定性。

Dysregulated APOBEC3G causes DNA damage and promotes genomic instability in multiple myeloma.

机构信息

Dana Farber Cancer Institute, Boston, MA, 02115, USA.

Veterans Administration Boston Healthcare System, West Roxbury, MA, 02132, USA.

出版信息

Blood Cancer J. 2021 Oct 8;11(10):166. doi: 10.1038/s41408-021-00554-9.

Abstract

Multiple myeloma (MM) is a heterogeneous disease characterized by significant genomic instability. Recently, a causal role for the AID/APOBEC deaminases in inducing somatic mutations in myeloma has been reported. We have identified APOBEC/AID as a prominent mutational signature at diagnosis with further increase at relapse in MM. In this study, we identified upregulation of several members of APOBEC3 family (A3A, A3B, A3C, and A3G) with A3G, as one of the most expressed APOBECs. We investigated the role of APOBEC3G in MM and observed that A3G expression and APOBEC deaminase activity is elevated in myeloma cell lines and patient samples. Loss-of and gain-of function studies demonstrated that APOBEC3G significantly contributes to increase in DNA damage (abasic sites and DNA breaks) in MM cells. Evaluation of the impact on genome stability, using SNP arrays and whole genome sequencing, indicated that elevated APOBEC3G contributes to ongoing acquisition of both the copy number and mutational changes in MM cells over time. Elevated APOBEC3G also contributed to increased homologous recombination activity, a mechanism that can utilize increased DNA breaks to mediate genomic rearrangements in cancer cells. These data identify APOBEC3G as a novel gene impacting genomic evolution and underlying mechanisms in MM.

摘要

多发性骨髓瘤(MM)是一种具有显著基因组不稳定性的异质性疾病。最近,有研究报道 AID/APOBEC 脱氨酶在诱导骨髓瘤体细胞突变中起因果作用。我们已经确定 APOBEC/AID 是诊断时的一个显著突变特征,在 MM 复发时进一步增加。在这项研究中,我们发现 APOBEC3 家族的几个成员(A3A、A3B、A3C 和 A3G)上调,其中 A3G 是表达最丰富的 APOBEC 之一。我们研究了 APOBEC3G 在 MM 中的作用,观察到 A3G 表达和 APOBEC 脱氨酶活性在骨髓瘤细胞系和患者样本中升高。失活和功能获得研究表明,APOBEC3G 显著增加 MM 细胞中的 DNA 损伤(碱基缺失和 DNA 断裂)。使用 SNP 芯片和全基因组测序评估对基因组稳定性的影响表明,APOBEC3G 的升高随着时间的推移导致 MM 细胞中持续获得拷贝数和突变变化。APOBEC3G 升高还导致同源重组活性增加,这一机制可以利用增加的 DNA 断裂来介导癌细胞中的基因组重排。这些数据表明 APOBEC3G 是影响 MM 中基因组进化和潜在机制的新基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10e5/8501035/7456e6957d42/41408_2021_554_Fig1_HTML.jpg

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