Abstract
Objectives Chronic pancreatitis is the end stage of a pathologic inflammatory syndrome with multiple etiological factors, including genetic. We hypothesized that some pancreatitis etiology originates in pancreatic acinar or duct cells and requires both injury and compensatory mechanism failure. Methods One hundred pancreatitis patients were assessed using a DNA sequencing panel for pancreatitis. Cooccurrence of variants within and between genes was measured. Gene coexpression was confirmed via published single-cell RNA sequencing. Results One hundred and twenty-one variants were identified in 2 or more patients, 15 of which were enriched compared with reference populations. Single cell RNA-sequencing data verified coexpression of GGT1, CFTR, and PRSS1 in duct cells, PRSS1, CPA1, CEL, CTRC, and SPINK1 in acinar cells, and UBR1 in both. Multiple-risk variants with injury/stress effects (CEL, CFTR, CPA1, PRSS1) and impaired cell protection (CTRC, GGT1, SPINK1, UBR1) cooccur within duct cells, acinar cells, or both. Conclusions Pancreatitis is a complex disorder with genetic interactions across genes and cell types. These findings suggest a new, non-Mendelian genetic risk/etiology paradigm where a combination of nonpathogenic genetic risk variants in groups of susceptibility genes and injury/dysfunction response genes contribute to acquired pancreatic disease.
Author supplied keywords
- 1KG - 1000 genomes, referring to the 1000 Genomes Project
- AC - allele count
- ACMG - American College of Medical Genetics
- AF - allele frequency
- AMR - American haplotype frequency (European ancestry)
- AN - allele number
- AP - acute pancreatitis
- CF - cystic fibrosis
- CP - chronic pancreatitis
- DM - diabetes mellitus
- EPI - exocrine pancreatic insufficiency
- EUR - European haplotype frequency
- FUS - factor of uncertain significance
- JBS - Johanson-Blizzard syndrome
- LD - linkage disequilibrium
- RAP - recurrent acute pancreatitis
- TF - transcription factor
- VUS - variant of uncertain significance
- acinar cell stress
- ductal cell stress
- eQTL - expression quantitative train loci
- genomics
- pancreatitis
- precision medicine
- scRNA-seq - single-cell RNA sequencing
Cite
CITATION STYLE
Ellison, M. A., Spagnolo, D. M., Shelton, C., Orlova, E., Larusch, J., Whitcomb, D. C., & Haupt, M. (2020). Complex Genetics in Pancreatitis: Insights Gained from a New Candidate Locus Panel. Pancreas, 49(7), 983–998. https://doi.org/10.1097/MPA.0000000000001612
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