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家族性神经鞘瘤病中 SMARCB1(INI1)突变的表达。

Expression of SMARCB1 (INI1) mutations in familial schwannomatosis.

机构信息

Department of Neurology, Massachusetts General Hospital, Boston, MA 02114, USA.

出版信息

Hum Mol Genet. 2012 Dec 15;21(24):5239-45. doi: 10.1093/hmg/dds370. Epub 2012 Sep 4.

Abstract

Genetic changes in the SMARCB1 tumor suppressor gene have recently been reported in tumors and blood from families with schwannomatosis. Exon scanning of all nine SMARCB1 exons in genomic DNA from our cohort of families meeting the criteria for 'definite' or 'presumptive' schwannomatosis previously revealed constitutional alterations in 13 of 19 families (68%). Screening of four new familial schwannomatosis probands identified one additional constitutional alteration. We confirmed the presence of mRNA transcripts for two missense alterations, four mutations of conserved splice motifs and two additional mutations, in less conserved sequences, which also affect splicing. Furthermore, we found that transcripts for a rare 3'-untranslated region (c.*82C > T) alteration shared by four unrelated families did not produce splice variants but did show unequal allelic expression, suggesting that the alteration is either causative itself or linked to an unidentified causative mutation. Overexpression studies in cells lacking SMARCB1 suggest that mutant SMARCB1 proteins, like wild-type SMARCB1 protein, retain the ability to suppress cyclin D1 activity. These data, together with the expression of SMARCB1 protein in a proportion of cells from schwannomatosis-related schwannomas, suggest that these tumors develop through a mechanism that is distinct from that of rhabdoid tumors in which SMARCB1 protein is completely absent in tumor cells.

摘要

SMARCB1 肿瘤抑制基因的遗传变化最近在神经鞘瘤病患者的肿瘤和血液中被报道。我们的队列中的 19 个家族(68%)符合“明确”或“推测”神经鞘瘤病的标准,对所有 9 个 SMARCB1 外显子的外显子扫描显示,在 13 个家族中存在结构改变。对 4 个新的家族性神经鞘瘤病先证者进行筛选,发现了另外 1 个结构改变。我们证实了两个错义改变、四个保守剪接基序的突变和两个额外的突变的 mRNA 转录本的存在,这些突变也影响剪接,它们位于不太保守的序列中。此外,我们发现四个不相关家族共有的罕见 3'-非翻译区(c.*82C > T)改变的转录本不产生剪接变体,但表现出等位基因表达的不平衡,这表明该改变本身是致病的,或者与未识别的致病突变相关。在缺乏 SMARCB1 的细胞中的过表达研究表明,突变型 SMARCB1 蛋白与野生型 SMARCB1 蛋白一样,保留了抑制细胞周期蛋白 D1 活性的能力。这些数据,以及在神经鞘瘤病相关神经鞘瘤的一部分细胞中表达 SMARCB1 蛋白,表明这些肿瘤的发生机制与横纹肌样肿瘤不同,在横纹肌样肿瘤中,肿瘤细胞中完全没有 SMARCB1 蛋白。

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