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Somatic mutations in DROSHA and DICER1 impair microRNA biogenesis through distinct mechanisms in Wilms tumours

机译: DROSHA DICER1 中的体细胞突变通过Wilms中不同的机制破坏microRNA的生物发生。肿瘤

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Wilms tumour is the most common childhood kidney cancer. Here we report the whole-exome sequencing of 44 Wilms tumours, identifying missense mutations in the microRNA (miRNA)-processing enzymes DROSHA and DICER1 , and novel mutations in MYCN , SMARCA4 and ARID1A . Examination of tumour miRNA expression, in vitro processing assays and genomic editing in human cells demonstrates that DICER1 and DROSHA mutations influence miRNA processing through distinct mechanisms. DICER1 RNase IIIB mutations preferentially impair processing of miRNAs deriving from the 5′-arm of pre-miRNA hairpins, while DROSHA RNase IIIB mutations globally inhibit miRNA biogenesis through a dominant-negative mechanism. Both DROSHA and DICER1 mutations impair expression of tumour-suppressing miRNAs, including the let-7 family, important regulators of MYCN , LIN28 and other Wilms tumour oncogenes. These results provide new insights into the mechanisms through which mutations in miRNA biogenesis components reprogramme miRNA expression in human cancer and suggest that these defects define a distinct subclass of Wilms tumours.
机译:威尔姆斯瘤是儿童期最常见的肾癌。在这里,我们报告了44种Wilms肿瘤的全外显子测序,确定了microRNA(miRNA)处理酶DROSHA和DICER1中的错义突变,以及MYCN,SMARCA4和ARID1A中的新型突变。人体细胞中肿瘤miRNA表达的检测,体外加工测定和基因组编辑表明,DICER1和DROSHA突变通过不同的机制影响miRNA的加工。 DICER1 RNase IIIB突变优先损害源自miRNA前发夹5'臂的miRNA的加工,而DROSHA RNase IIIB突变则通过显性负性机制全面抑制miRNA生物发生。 DROSHA和DICER1突变都会削弱抑制肿瘤的miRNA的表达,包括let-7家族,MYCN,LIN28和其他Wilms肿瘤癌基因的重要调节剂。这些结果提供了新的见解,通过这些机制,miRNA生物发生成分中的突变重新编程了人类癌症中的miRNA表达,并表明这些缺陷定义了Wilms肿瘤的独特亚类。

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