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.

Carcinogenesis
|December 17, 2021
PubMed

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.