Pangenome graphs improve the analysis of rare genetic diseases
Groza, C.; Schwendinger-Schreck, C.; Cheung, W. A.; Farrow, E. G.; Thiffault, I.; Lake, J.; Rizzo, W. B.; Evrony, G.; Curran, T.; Bourque, G.; Pastinen, T.
Show abstract
Rare DNA alterations that cause heritable diseases are only partially resolvable by clinical next-generation sequencing due to the difficulty of detecting structural variation (SV) in all genomic contexts. Long-read, high fidelity genome sequencing (HiFi-GS) detects SVs against reference genomes with increased sensitivity and also enables the assembly of personal and graph genomes. We leveraged standard reference genomes, publicly available human haploid assemblies (n=94), together with a large collection of HiFi-GS data from a rare disease program (Genomic Answers for Kids, GA4K, n=574 assemblies). These data allowed us to build a deep population graph genome distinguishing very rare SVs from recurrent polymorphisms. Using graphs to discover SVs, we obtained a higher level of reproducibility than that obtained by the standard reference approach. We observed over 200,000 SV alleles unique to the rare disease GA4K cohort, including nearly 1,000 rare variants that impact coding sequence. With improved specificity for rare SVs, we isolate 30 candidate SVs in phenotypically prioritized genes, including known disease SVs. We isolate novel diagnostic SV in KMT2E in a patient demonstrating use of personal assemblies coupled with pangenome graphs as a new handle for rare disease genomics.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Inferring compound heterozygosity from large-scale exome sequencing data 96%
- Long read sequencing of 3,622 Icelanders provides insight into the role of structural variants in human diseases and other traits 96%
- Genotyping sequence-resolved copy number variationusing pangenomes reveals paralog-specific global diversityand expression divergence of duplicated genes 94%
Similar papers in this journal
Similar papers in this journal
- Defining and Reducing Variant Classification Disparities 94%
- Multi-modal investigation of the schizophrenia-associated 3q29 genomic interval reveals global genetic diversity with unique haplotypes and segments that increase the risk for non-allelic homologous recombination 94%
- Sequence dependencies and mutation rates of localized mutational processes in cancer 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.