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肾上腺皮质癌的综合基因组特征分析。

Integrated genomic characterization of adrenocortical carcinoma.

机构信息

1] INSERM U1016, Institut Cochin, Paris, France. [2] CNRS UMR 8104, Paris, France. [3] Université Paris Descartes, Sorbonne Paris Cité, Paris, France. [4] Center for Rare Adrenal Diseases, Department of Endocrinology, Assistance Publique-Hôpitaux de Paris, Hôpital Cochin, Paris, France. [5].

1] Programme Cartes d'Identité des Tumeurs (CIT), Ligue Nationale Contre Le Cancer, Paris, France. [2].

出版信息

Nat Genet. 2014 Jun;46(6):607-12. doi: 10.1038/ng.2953. Epub 2014 Apr 20.

Abstract

Adrenocortical carcinomas (ACCs) are aggressive cancers originating in the cortex of the adrenal gland. Despite overall poor prognosis, ACC outcome is heterogeneous. We performed exome sequencing and SNP array analysis of 45 ACCs and identified recurrent alterations in known driver genes (CTNNB1, TP53, CDKN2A, RB1 and MEN1) and in genes not previously reported in ACC (ZNRF3, DAXX, TERT and MED12), which we validated in an independent cohort of 77 ACCs. ZNRF3, encoding a cell surface E3 ubiquitin ligase, was the most frequently altered gene (21%) and is a potential new tumor suppressor gene related to the β-catenin pathway. Our integrated genomic analyses further identified two distinct molecular subgroups with opposite outcome. The C1A group of ACCs with poor outcome displayed numerous mutations and DNA methylation alterations, whereas the C1B group of ACCs with good prognosis displayed specific deregulation of two microRNA clusters. Thus, aggressive and indolent ACCs correspond to two distinct molecular entities driven by different oncogenic alterations.

摘要

肾上腺皮质癌(adrenocortical carcinomas,ACCs)是起源于肾上腺皮质的侵袭性癌症。尽管总体预后较差,但 ACC 的结局存在异质性。我们对 45 例 ACC 进行了外显子测序和 SNP 芯片分析,鉴定出了已知驱动基因(CTNNB1、TP53、CDKN2A、RB1 和 MEN1)和之前未在 ACC 中报道的基因(ZNRF3、DAXX、TERT 和 MED12)的高频改变,并在 77 例 ACC 的独立队列中进行了验证。ZNRF3 编码细胞表面 E3 泛素连接酶,是最常改变的基因(21%),可能是与 β-连环蛋白通路相关的新的潜在肿瘤抑制基因。我们的综合基因组分析进一步确定了具有相反结局的两个不同的分子亚群。预后不良的 C1A 组 ACC 显示出大量的突变和 DNA 甲基化改变,而预后良好的 C1B 组 ACC 则显示出两个 microRNA 簇的特异性失调。因此,侵袭性和惰性 ACC 对应于两种不同的分子实体,由不同的致癌改变驱动。

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