4.6 Article

Molecular characterization of DICER1-mutated pituitary blastoma

期刊

ACTA NEUROPATHOLOGICA
卷 141, 期 6, 页码 929-944

出版社

SPRINGER
DOI: 10.1007/s00401-021-02283-6

关键词

Pituitary blastoma; DICER1; DICER1 syndrome; Differentiation; PRAME; PI3K; Pre-miRNA; miRNA; miRNA-sequencing; mRNA-sequencing; Whole genome sequencing; Methylation

资金

  1. Canadian Cancer Society Research Institute [702071]
  2. Canadian Institutes for Health Research [FDN-148390]
  3. Childhood Cancer Canada Foundation [C17]
  4. Vanier Canada Graduate Scholarship
  5. Delta Kappa Gamma World Fellowship

向作者/读者索取更多资源

Pituitary blastomas are rare and potentially lethal pediatric intracranial tumors with DICER1 pathogenic variants inducing improper processing of miRNA precursors, leading to dysregulation of miRNAs and mRNA targets. The tumors show dysregulation of key signaling pathways like RAR, WNT, and NOTCH, and activation of PI3K pathway. Comparative methylation profiling reveals distinct features of PitBs compared to other CNS tumors.
Pituitary blastoma (PitB) has recently been identified as a rare and potentially lethal pediatric intracranial tumor. All cases that have been studied molecularly possess at least one DICER1 pathogenic variant. Here, we characterized nine pituitary samples, including three fresh frozen PitBs, three normal fetal pituitary glands and three normal postnatal pituitary glands using small-RNA-Seq, RNA-Seq, methylation profiling, whole genome sequencing and Nanostring (R) miRNA analyses; an extended series of 21 pituitary samples was used for validation purposes. These analyses demonstrated that DICER1 RNase IIIb hotspot mutations in PitBs induced improper processing of miRNA precursors, resulting in aberrant 5p-derived miRNA products and a skewed distribution of miRNAs favoring mature 3p over 5p miRNAs. This led to dysregulation of hundreds of 5p and 3p miRNAs and concomitant dysregulation of numerous mRNA targets. Gene expression analysis revealed PRAME as the most significantly upregulated gene (500-fold increase). PRAME is a member of the Retinoic Acid Receptor (RAR) signaling pathway and in PitBs, the RAR, WNT and NOTCH pathways are dysregulated. Cancer Hallmarks analysis showed that PI3K pathway is activated in the tumors. Whole genome sequencing demonstrated a quiet genome with very few somatic alterations. The comparison of methylation profiles to publicly available data from similar to 3000 other central nervous system tumors revealed that PitBs have a distinct methylation profile compared to all other tumors, including pituitary adenomas. In conclusion, this comprehensive characterization of DICER1-related PitB revealed key molecular underpinnings of PitB and identified pathways that could potentially be exploited in the treatment of this tumor.

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