Identification of Genomic Alterations in Sporadic Pancreatic Neurogenic Tumors.

Pancreas

From the Department of Pancreatobiliary Surgery, The First Affiliated Hospital, Sun Yat-sen University, Guangzhou.

Published: September 2021

AI Article Synopsis

  • The study investigated genetic changes in rare pancreatic tumors like schwannoma and neurofibroma using tumor samples from three patients who had surgery.
  • Exome sequencing of one schwannoma revealed a potentially harmful MUTYH variant along with notable changes in NF2 and NOTCH1 genes, whereas the other schwannoma showed issues related to DNA repair and cell cycle processes.
  • The neurofibroma presented different genetic alterations, including deletions and amplifications in NF1, TP53, and ERBB3, indicating that these genetic variants might contribute significantly to the development of these pancreatic tumors.

Article Abstract

Pancreatic neurogenic tumors, including schwannoma and neurofibroma, are rare, and their genetic aberrances have not been defined. The present study aimed at investigating the genomic alterations of pancreatic schwannoma and neurofibroma. Two patients with pancreatic schwannoma and 1 patient with neurofibroma, who underwent surgical resection at the First Affiliated Hospital, Sun Yat-sen University between June 2016 and April 2019, were recruited into the study. Their tumor tissues were analyzed by exome sequencing and genome sequencing. Exome sequencing revealed a MUTYH likely pathogenic germline variant in 1 schwannoma with somatic NF2del and NOTCH1 amplification. Pathway enrichment analysis on the other schwannoma case showed that the main abnormal function involved DNA damage repair, mitosis, and cell cycle. In addition, genome sequencing showed the inversion (INV) variant of SPIRE gene and multiple mitochondrial INV variants in both schwannoma cases. Furthermore, exome sequencing revealed NF1del, single nucleotide variation, TP53, and ERBB3 amplification in neurofibroma, whereas genomic duplication/deletion variants and mitochondrial abnormalities were much less than that in schwannoma. In conclusion, variants in NF1 and NF2 genes, amplification of key driver genes, and somatic and mitochondrial INV variants may play important roles in the development of pancreatic schwannoma and neurofibroma.

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Source
http://dx.doi.org/10.1097/MPA.0000000000001680DOI Listing

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