DICER1 platform domain missense variants inhibit miRNA biogenesis and lead to tumor susceptibility.

NAR Cancer Pub Date : 2023-06-16 eCollection Date: 2023-09-01 DOI:10.1093/narcan/zcad030
Dylan Pelletier, Anne-Laure Chong, Mona Wu, Leora Witkowski, Sophie Albert, Nelly Sabbaghian, Marc R Fabian, William D Foulkes
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Abstract

The endoribonuclease DICER1 plays an essential role in the microRNA (miRNA) biogenesis pathway, cleaving precursor miRNA (pre-miRNA) stem-loops to generate mature single-stranded miRNAs. Germline pathogenic variants (GPVs) in DICER1 result in DICER1 tumor predisposition syndrome (DTPS), a mainly childhood-onset tumor susceptibility disorder. Most DTPS-causing GPVs are nonsense or frameshifting, with tumor development requiring a second somatic missense hit that impairs the DICER1 RNase IIIb domain. Interestingly, germline DICER1 missense variants that cluster in the DICER1 Platform domain have been identified in some persons affected by tumors that also associate with DTPS. Here, we demonstrate that four of these Platform domain variants prevent DICER1 from producing mature miRNAs and as a result impair miRNA-mediated gene silencing. Importantly, we show that in contrast to canonical somatic missense variants that alter DICER1 cleavage activity, DICER1 proteins harboring these Platform variants fail to bind to pre-miRNA stem-loops. Taken together, this work sheds light upon a unique subset of GPVs causing DTPS and provides new insights into how alterations in the DICER1 Platform domain can impact miRNA biogenesis.

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DICER1 平台结构域错义变体抑制 miRNA 的生物发生并导致肿瘤易感性。
内切核酸酶 DICER1 在 microRNA(miRNA)生物发生途径中发挥着重要作用,它能裂解前体 miRNA(pre-miRNA)茎环,生成成熟的单链 miRNA。DICER1的基因致病变体(GPV)会导致DICER1肿瘤易感综合征(DTPS),这是一种主要在儿童期发病的肿瘤易感性疾病。大多数导致 DTPS 的 GPV 都是无义变异或框架转换变异,肿瘤发生需要第二个体细胞错义突变,该突变会损害 DICER1 RNase IIIb 结构域。有趣的是,在一些受 DTPS 肿瘤影响的人群中发现了聚集在 DICER1 平台结构域的种系 DICER1 错义变异。在这里,我们证明这些平台结构域变异中有四个会阻止 DICER1 产生成熟的 miRNA,从而影响 miRNA 介导的基因沉默。重要的是,我们发现,与改变 DICER1 裂解活性的典型体细胞错义变异不同,携带这些平台变异的 DICER1 蛋白不能与 pre-miRNA 茎环结合。综上所述,这项工作揭示了导致 DTPS 的 GPV 的独特亚群,并为 DICER1 平台结构域的改变如何影响 miRNA 的生物发生提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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