Small intestinal neuroendocrine tumors lack early genomic drivers, acquire DNA repair defects and harbor hallmarks of low REST expression
Abstract
Abstract The tumorigenesis of small intestinal neuroendocrine tumors (siNETs) is not understood and comprehensive genomic and transcriptomic data sets are limited. Therefore, we performed whole genome and transcriptome analysis of 39 well differentiated siNET samples. Our genomic data revealed a lack of recurrent driver mutations and demonstrated that multifocal siNETs from individual patients can arise genetically independently. We detected germline mutations in Fanconi anemia DNA repair pathway (FANC) genes, involved in homologous recombination (HR) DNA repair, in 9% of patients and found mutational signatures of defective HR DNA repair in late-stage tumor evolution. Furthermore, transcriptomic analysis revealed low expression of the transcriptional repressor REST. Summarizing, we identify a novel common transcriptomic signature of siNETs and demonstrate that genomic alterations alone do not explain initial tumor formation, while impaired DNA repair likely contributes to tumor evolution and represents a potential pharmaceutical target in a subset of patients.
Article Details
Authors (19)
Felix Bolduan
Niklas Müller-Bötticher
Olivia Debnath
Ines Eichhorn
Yvonne Giesecke
Alexandra Wetzel
Shashwat Sahay
Tomasz Zemojtel
Marten Jaeger
Ute Ungethuem
Christoph Roderburg
Catarina Alisa Kunze
Annika Lehmann
David Horst
Frank Tacke
Roland Eils
Bertram Wiedenmann
Michael Sigal
Naveed Ishaque