Abstract
AbstractInsertion of active retroelements—L1s,Alus, and SVAs—can disrupt proper genome function and lead to various disorders including cancer. However, the role ofde novoretroelements (DNRTs) in birth defects and childhood cancers has not been well characterized due to the lack of adequate data and efficient computational tools. Here, we examine whole-genome sequencing data of 3,244 trios from 12 birth defect and childhood cancer cohorts in the Gabriella Miller Kids First Pediatric Research Program. Using an improved version of our tool xTea (x-Transposable element analyzer) that incorporates a deep-learning module, we identified 162 DNRTs, as well as 2 pseudogene insertions. Several variants are likely to be causal, such as ade novo Aluinsertion that led to the ablation of a whole exon in theNF1gene in a proband with brain tumor. We observe a highde novoSVA insertion burden in both high-intolerance loss-of-function genes and exons as well as more frequentde novo Aluinsertions of paternal origin. We also identify potential mosaic DNRTs from embryonic stages. Our study reveals the important roles of DNRTs in causing birth defects and predisposition to childhood cancers.
Publisher
Cold Spring Harbor Laboratory