Division of Endocrinology and Diabetes, Children's Hospital of Philadelphia, University of Pennsylvania, Philadelphia, PA, United States.
Department of Biomedical and Health Informatics, Children's Hospital of Philadelphia, Philadelphia, PA, United States.
Front Endocrinol (Lausanne). 2023 Feb 21;14:1083382. doi: 10.3389/fendo.2023.1083382. eCollection 2023.
DICER1 is a highly conserved RNase III endoribonuclease essential for the biogenesis of single-stranded mature microRNAs (miRNAs) from stem-loop precursor miRNAs. Somatic mutations in the RNase IIIb domain of DICER1 impair its ability to generate mature 5p miRNAs and are believed to drive tumorigenesis in DICER1 syndrome-associated and sporadic thyroid tumors. However, the -driven specific changes in miRNAs and resulting changes in gene expression are poorly understood in thyroid tissue. In this study, we profiled the miRNA (n=2,083) and mRNA (n=2,559) transcriptomes of 20 non-neoplastic, 8 adenomatous and 60 pediatric thyroid cancers (13 follicular thyroid cancers [FTC] and 47 papillary thyroid cancers [PTC]) of which 8 had RNase IIIb mutations. All mutant differentiated thyroid cancers (DTC) were follicular patterned (six follicular variant PTC and two FTC), none had lymph node metastasis. We demonstrate that pathogenic somatic mutations were associated with a global reduction of 5p-derived miRNAs, including those particularly abundant in the non-neoplastic thyroid tissue such as let-7 and mir-30 families, known for their tumor suppressor function. There was also an unexpected increase of 3p miRNAs, possibly associated with mRNA expression increase in tumors harboring RNase IIIb mutations. These abnormally expressed 3p miRNAs, which are otherwise low or absent in -wt DTC and non-neoplastic thyroid tissues, make up exceptional markers for malignant thyroid tumors harboring RNase IIIb mutations. The extensive disarray in the miRNA transcriptome results in gene expression changes, which were indicative of positive regulation of cell-cycle. Moreover, differentially expressed genes point to increased MAPK signaling output and loss of thyroid differentiation comparable to the RAS-like subgroup of PTC (as coined by The Cancer Genome Atlas), which is reflective of the more indolent clinical behavior of these tumors.
DICER1 是一种高度保守的 RNase III 内切核酸酶,对于从茎环前体 miRNA 生成单链成熟 microRNA(miRNA)至关重要。DICER1 的 RNase IIIb 结构域中的体细胞突变会损害其生成成熟 5p miRNA 的能力,据信这会驱动 DICER1 综合征相关和散发性甲状腺肿瘤的肿瘤发生。然而,在甲状腺组织中,关于 miRNA 的 -驱动的特异性变化以及由此导致的基因表达变化知之甚少。在这项研究中,我们对 20 例非肿瘤、8 例腺瘤和 60 例儿童甲状腺癌(13 例滤泡甲状腺癌[FTC]和 47 例乳头状甲状腺癌[PTC])的 miRNA(n=2,083)和 mRNA(n=2,559)转录组进行了分析,其中 8 例具有 RNase IIIb 突变。所有突变的分化型甲状腺癌(DTC)均呈滤泡状(6 例滤泡变体 PTC 和 2 例 FTC),无淋巴结转移。我们证明,致病性体细胞突变与 5p 衍生 miRNA 的整体减少相关,包括在非肿瘤甲状腺组织中特别丰富的 miRNA,如 let-7 和 mir-30 家族,它们因其肿瘤抑制功能而闻名。还有出乎意料的 3p miRNA 增加,可能与携带 RNase IIIb 突变的肿瘤中的 mRNA 表达增加有关。这些在携带 RNase IIIb 突变的 -wt DTC 和非肿瘤甲状腺组织中低表达或不存在的异常表达的 3p miRNA,构成了具有 RNase IIIb 突变的恶性甲状腺肿瘤的特殊标志物。miRNA 转录组的广泛混乱导致基因表达变化,这些变化表明细胞周期的正调节。此外,差异表达基因表明 MAPK 信号输出增加和甲状腺分化丧失,与甲状腺癌基因组图谱(TCGA)定义的 PTC 的 RAS 样亚组相似,这反映了这些肿瘤的更惰性临床行为。