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Updated: Aug 7, 2025

In Vivo Inhibition of MicroRNA to Decrease Tumor Growth in Mice
Published on: August 23, 2019
DICER1 RNase IIIb domain mutations trigger widespread miRNA dysregulation and MAPK activation in pediatric thyroid
Julio C Ricarte-Filho1, Victoria Casado-Medrano1, Erin Reichenberger2
1Division of Endocrinology and Diabetes, Children's Hospital of Philadelphia, University of Pennsylvania, Philadelphia, PA, United States.
Abstract:
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 DICER1-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 DICER1 RNase IIIb mutations. All DICER1-mutant differentiated thyroid cancers (DTC) were follicular patterned (six follicular variant PTC and two FTC), none had lymph node metastasis. We demonstrate that DICER1 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 DICER1 mRNA expression increase in tumors harboring RNase IIIb mutations. These abnormally expressed 3p miRNAs, which are otherwise low or absent in DICER1-wt DTC and non-neoplastic thyroid tissues, make up exceptional markers for malignant thyroid tumors harboring DICER1 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.
Insights
Somatic DICER1 mutations in thyroid tumors globally reduce 5p microRNAs (miRNAs) and increase 3p miRNAs. These miRNA changes disrupt gene expression, promoting cell-cycle regulation and MAPK signaling, indicating a less aggressive tumor behavior.
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- DICER1 is crucial for microRNA (miRNA) biogenesis, and its mutations are linked to tumorigenesis.
- Somatic mutations in DICER1's RNase IIIb domain impair 5p miRNA generation, but their specific impact on thyroid tumors is unclear.
Purpose of the Study:
- To investigate the effects of DICER1 mutations on miRNA and mRNA expression in thyroid tissues.
- To identify novel biomarkers for DICER1-mutant thyroid cancers.
Main Methods:
- Profilng of miRNA (n=2,083) and mRNA (n=2,559) transcriptomes from non-neoplastic, adenomatous, and pediatric thyroid cancers.
- Analysis of DICER1 RNase IIIb mutations in 60 pediatric thyroid cancers, including 8 with mutations.
Main Results:
- DICER1 mutations were associated with a global reduction in 5p-derived miRNAs (e.g., let-7, mir-30 families) and an increase in 3p miRNAs.
- Abnormally expressed 3p miRNAs serve as potential biomarkers for DICER1-mutant thyroid tumors.
- Gene expression changes indicated increased cell-cycle regulation, MAPK signaling, and dedifferentiation, correlating with indolent clinical behavior.
Conclusions:
- DICER1 mutations significantly alter the miRNA transcriptome in thyroid cancer, impacting gene expression and cellular processes.
- 3p miRNAs represent promising diagnostic markers for specific thyroid tumor subtypes.
- The observed molecular changes suggest a link between DICER1 mutations and a less aggressive tumor phenotype.
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