Multiregion whole-exome sequencing of intraductal papillary mucinous neoplasms reveals frequent somatic KLF4 mutations predominantly in low-grade regions

Author:

Fujikura Kohei,Hosoda Waki,Felsenstein Matthäus,Song Qianqian,Reiter Johannes G,Zheng Lily,Beleva Guthrie Violeta,Rincon Natalia,Dal Molin Marco,Dudley Jonathan,Cohen Joshua D,Wang Pei,Fischer Catherine G,Braxton Alicia M,Noë Michaël,Jongepier Martine,Fernández-del Castillo Carlos,Mino-Kenudson Mari,Schmidt C Max,Yip-Schneider Michele T,Lawlor Rita T,Salvia Roberto,Roberts Nicholas J,Thompson Elizabeth D,Karchin Rachel,Lennon Anne Marie,Jiao Yuchen,Wood Laura DORCID

Abstract

ObjectiveIntraductal papillary mucinous neoplasms (IPMNs) are non-invasive precursor lesions that can progress to invasive pancreatic cancer and are classified as low-grade or high-grade based on the morphology of the neoplastic epithelium. We aimed to compare genetic alterations in low-grade and high-grade regions of the same IPMN in order to identify molecular alterations underlying neoplastic progression.DesignWe performed multiregion whole exome sequencing on tissue samples from 17 IPMNs with both low-grade and high-grade dysplasia (76 IPMN regions, including 49 from low-grade dysplasia and 27 from high-grade dysplasia). We reconstructed the phylogeny for each case, and we assessed mutations in a novel driver gene in an independent cohort of 63 IPMN cyst fluid samples.ResultsOur multiregion whole exome sequencing identified KLF4, a previously unreported genetic driver of IPMN tumorigenesis, with hotspot mutations in one of two codons identified in >50% of the analyzed IPMNs. Mutations in KLF4 were significantly more prevalent in low-grade regions in our sequenced cases. Phylogenetic analyses of whole exome sequencing data demonstrated diverse patterns of IPMN initiation and progression. Hotspot mutations in KLF4 were also identified in an independent cohort of IPMN cyst fluid samples, again with a significantly higher prevalence in low-grade IPMNs.ConclusionHotspot mutations in KLF4 occur at high prevalence in IPMNs. Unique among pancreatic driver genes, KLF4 mutations are enriched in low-grade IPMNs. These data highlight distinct molecular features of low-grade and high-grade dysplasia and suggest diverse pathways to high-grade dysplasia via the IPMN pathway.

Funder

American Cancer Society

Kaya Tuncer Career Development Award in Gastrointestinal Cancer Prevention

Rolfe Pancreatic Cancer Foundation

Joseph C Monastra Foundation

CAMS Innovation Fund for Medical Sciences

The Gerald O Mann Charitable Foundation

American Gastroenterological Association

Carol S. and Robert M. Long Pancreatic Cancer Research Fund

Susan Wojcicki and Denis Troper

Sidney Kimmel Foundation for Cancer Research

Emerson Collective Cancer Research Fund

Associazione Italiana Ricerca Cancro

Buffone Family Gastrointestinal Cancer Research Fund

Virginia and D.K. Ludwig Fund for Cancer Research

Sol Goldman Sequencing Facility at Johns Hopkins

National Institute of Diabetes and Digestive and Kidney Diseases

Sol Goldman Pancreatic Cancer Research Center

Howard Hughes Medical Institute

American Association for Cancer Research

Lustgarten Foundation

National Cancer Institute

Publisher

BMJ

Subject

Gastroenterology

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