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神经纤维瘤/神经鞘瘤的分子分析鉴定出常见的单体型 22 和 α-T-连环蛋白/CTNNA3 是一种新的候选肿瘤抑制基因。

Molecular Analysis of Hybrid Neurofibroma/Schwannoma Identifies Common Monosomy 22 and α-T-Catenin/CTNNA3 as a Novel Candidate Tumor Suppressor.

机构信息

Institute of Neuropathology, University Hospital Münster, Münster, Germany.

Institute of Human Genetics, University Hospital Schleswig-Holstein, Kiel, Germany.

出版信息

Am J Pathol. 2016 Dec;186(12):3285-3296. doi: 10.1016/j.ajpath.2016.08.019. Epub 2016 Oct 17.

Abstract

Neurofibromas and schwannomas are benign Schwann cell-derived peripheral nerve sheath tumors arising sporadically and within neurofibromatoses. Multiple tumors are a hallmark of neurofibromatosis type 1 (NF1) and type 2 (NF2) and schwannomatosis. Neurofibromas in NF1 and schwannomas in NF2 or schwannomatosis are defined by distinctive molecular hits. Among these, multiple hybrid neurofibromas/schwannomas may also appear, not yet being defined by a molecular background. We therefore performed molecular analysis of 22 hybrid neurofibromas/schwannomas using array comparative genomic hybridization, immunohistochemistry, quantitative RT-PCR, and functional analyses of cultured Schwann cells. Furthermore, we analyzed SMARCB1 by fluorescence in situ hybridization and multiplex ligation-dependent probe. Monosomy 22 was identified in 44% of tumors of tested patients with hybrid neurofibromas/schwannomas. In addition, in a single case, we detected focal deletion of the α-T-catenin/CTNNA3 gene (10q21.3). To further characterize this candidate, transient knockdown of α-T-catenin in Schwann cells was performed. CTNNA3 depleted cells showed cytoskeletal abnormalities and reduced E-cadherin expression, indicating epithelial-mesenchymal transition-like abnormalities. To conclude, we uncovered loss of chromosome 22 in almost half of all cases with hybrid neurofibromas/schwannomas of patients with multiple peripheral nerve sheath tumors. We tagged α-T-catenin/CTNNA3 as a novel candidate gene. Our functional investigations might indicate involvement of α-T-catenin/CTNNA3 in the biology of peripheral nerve sheath tumors.

摘要

神经纤维瘤和施万细胞瘤是良性施万细胞来源的周围神经鞘肿瘤,偶发于神经纤维瘤病中。多发性肿瘤是神经纤维瘤病 1 型(NF1)和 2 型(NF2)和 schwannomatosis 的特征。NF1 中的神经纤维瘤和 NF2 或 schwannomatosis 中的施万细胞瘤由独特的分子打击定义。在这些肿瘤中,也可能出现多种混合性神经纤维瘤/施万细胞瘤,目前尚未确定其分子背景。因此,我们使用阵列比较基因组杂交、免疫组织化学、定量 RT-PCR 和培养的施万细胞功能分析对 22 例混合性神经纤维瘤/施万细胞瘤进行了分子分析。此外,我们还通过荧光原位杂交和多重连接依赖性探针分析了 SMARCB1。在接受混合性神经纤维瘤/施万细胞瘤检测的患者中,有 44%的肿瘤存在 22 号染色体单体缺失。此外,在一个单独的病例中,我们检测到 α-连环蛋白/CTNNA3 基因(10q21.3)的局部缺失。为了进一步表征这个候选基因,我们在施万细胞中进行了瞬时敲低 α-连环蛋白的实验。CTNNA3 缺失的细胞表现出细胞骨架异常和 E-钙粘蛋白表达减少,表明上皮-间充质转化样异常。总之,我们发现,在多发性周围神经鞘肿瘤患者的混合性神经纤维瘤/施万细胞瘤中,几乎一半的病例都存在 22 号染色体缺失。我们将 α-连环蛋白/CTNNA3 标记为一个新的候选基因。我们的功能研究可能表明 α-连环蛋白/CTNNA3 参与了周围神经鞘肿瘤的生物学过程。

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