DICER1 platform domain missense variants inhibit miRNA biogenesis and lead to tumor susceptibility

Author:

Pelletier Dylan123,Chong Anne-Laure12,Wu Mona12,Witkowski Leora1,Albert Sophie2,Sabbaghian Nelly12,Fabian Marc R2456ORCID,Foulkes William D1247ORCID

Affiliation:

1. Department of Human Genetics, Medicine, McGill University , Montreal , QC, Canada

2. Cancer Axis, Lady Davis Institute, Jewish General Hospital , Montreal , QC, Canada

3. Faculty of Medicine, Université de Montréal , Montreal , QC, Canada

4. Gerald Bronfman Department of Oncology, McGill University , Montreal , QC, Canada

5. Division of Experimental Medicine, McGill University , Montreal , QC, Canada

6. Department of Biochemistry, McGill University , Montreal , QC, Canada

7. Cancer Research Program, Research Institute of the McGill University Health Centre , Montreal , QC, Canada

Abstract

Abstract The endoribonuclease DICER1 plays an essential role in the microRNA (miRNA) biogenesis pathway, cleaving precursor miRNA (pre-miRNA) stem-loops to generate mature single-stranded miRNAs. Germline pathogenic variants (GPVs) in DICER1 result in DICER1 tumor predisposition syndrome (DTPS), a mainly childhood-onset tumor susceptibility disorder. Most DTPS-causing GPVs are nonsense or frameshifting, with tumor development requiring a second somatic missense hit that impairs the DICER1 RNase IIIb domain. Interestingly, germline DICER1 missense variants that cluster in the DICER1 Platform domain have been identified in some persons affected by tumors that also associate with DTPS. Here, we demonstrate that four of these Platform domain variants prevent DICER1 from producing mature miRNAs and as a result impair miRNA-mediated gene silencing. Importantly, we show that in contrast to canonical somatic missense variants that alter DICER1 cleavage activity, DICER1 proteins harboring these Platform variants fail to bind to pre-miRNA stem-loops. Taken together, this work sheds light upon a unique subset of GPVs causing DTPS and provides new insights into how alterations in the DICER1 Platform domain can impact miRNA biogenesis.

Funder

Canadian Institutes of Health Research

Natural Sciences and Engineering Research Council of Canada

Fonds de Recherche du Québec - Santé

Publisher

Oxford University Press (OUP)

Subject

Cancer Research,Oncology

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