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The DGCR8 E518K mutation found in Wilms tumors leads to a partial miRNA processing defect that alters gene expression
Romina Vardapour1, Tim Kehl2, Susanne Kneitz3
1Theodor-Boveri-Institute/Biocenter, Developmental Biochemistry, Wuerzburg University, 97074 Wuerzburg, Germany.
Abstract:
Wilms tumor (WT) is the most common renal tumor in childhood. We and others have previously identified oncogenic driver mutations affecting the microprocessor genes DROSHA and DGCR8 that lead to altered miRNA expression patterns. In the case of DGCR8, a single recurrent hotspot mutation (E518K) was found in the RNA binding domain. To functionally assess this mutation in vitro, we generated mouse Dgcr8-KO embryonic stem cell (mESC) lines with an inducible expression of wild-type or mutant DGCR8, mirroring the hemizygous mutant expression seen in WT. RNA-seq analysis revealed significant differences of miRNA expression profiles in DGCR8-E518K compared with DGCR8-wild-type mESCs. The E518K mutation only led to a partial rescue of the reported miRNA processing defect in Dgcr8-KO, with selectively reduced expression of numerous canonical miRNAs. Nevertheless, DGCR8-E518K retained significant activity given its ability to still process many miRNAs. Subsequent to altered miRNA levels, the expression of mRNA targets was likewise changed. Functional assays showed that DGCR8-E518K cells still have a partial proliferation and differentiation defect but were able to rescue critical biological processes in embryoid body development. The stem cell program could be shut down and all three germ layers were formed. These findings suggest that the E518K mutation leads to a partial reduction of microprocessor activity and altered specificity with selective impairment only in certain developmental contexts, apparently including nephrogenesis.
Insights
The DGCR8-E518K mutation in Wilms tumor partially impairs microRNA processing, affecting gene expression and cellular development. This study investigates its functional impact on stem cells and embryonic development.
Area of Science:
- Developmental Biology
- Molecular Biology
- Genetics
Background:
- Wilms tumor (WT) is a common childhood kidney cancer.
- Mutations in microprocessor genes like DGCR8 alter microRNA (miRNA) expression.
- A recurrent DGCR8 mutation (E518K) is found in WT.
Purpose of the Study:
- To functionally characterize the DGCR8-E518K mutation in vitro.
- To assess its impact on miRNA processing, mRNA targets, and cellular functions.
- To understand its role in developmental contexts, including nephrogenesis.
Main Methods:
- Generated inducible mouse embryonic stem cell (mESC) lines expressing wild-type or mutant DGCR8.
- Performed RNA sequencing (RNA-seq) to analyze miRNA and mRNA expression profiles.
- Conducted functional assays to evaluate proliferation, differentiation, and embryoid body development.
Main Results:
- DGCR8-E518K expression resulted in altered miRNA profiles compared to wild-type.
- The mutation caused partial rescue of miRNA processing defects, with selective reduction of canonical miRNAs.
- Cells with DGCR8-E518K showed partial defects in proliferation and differentiation but supported embryoid body development.
Conclusions:
- The E518K mutation partially reduces microprocessor activity and alters miRNA processing specificity.
- This leads to selective impairment in specific developmental contexts, potentially including kidney development (nephrogenesis).
- Understanding this mutation's effects is crucial for Wilms tumor research.
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