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3D genomic mapping reveals multifocality of human pancreatic precancers

Authors :
Braxton, Alicia M.
Kiemen, Ashley L.
Grahn, Mia P.
Forjaz, André
Parksong, Jeeun
Mahesh Babu, Jaanvi
Lai, Jiaying
Zheng, Lily
Niknafs, Noushin
Jiang, Liping
Cheng, Haixia
Song, Qianqian
Reichel, Rebecca
Graham, Sarah
Damanakis, Alexander I.
Fischer, Catherine G.
Mou, Stephanie
Metz, Cameron
Granger, Julie
Liu, Xiao-Ding
Bachmann, Niklas
Zhu, Yutong
Liu, YunZhou
Almagro-Pérez, Cristina
Jiang, Ann Chenyu
Yoo, Jeonghyun
Kim, Bridgette
Du, Scott
Foster, Eli
Hsu, Jocelyn Y.
Rivera, Paula Andreu
Chu, Linda C.
Liu, Fengze
Fishman, Elliot K.
Yuille, Alan
Roberts, Nicholas J.
Thompson, Elizabeth D.
Scharpf, Robert B.
Cornish, Toby C.
Jiao, Yuchen
Karchin, Rachel
Hruban, Ralph H.
Wu, Pei-Hsun
Wirtz, Denis
Wood, Laura D.
Source :
Nature; 20240101, Issue: Preprints p1-9, 9p
Publication Year :
2024

Abstract

Pancreatic intraepithelial neoplasias (PanINs) are the most common precursors of pancreatic cancer, but their small size and inaccessibility in humans make them challenging to study1. Critically, the number, dimensions and connectivity of human PanINs remain largely unknown, precluding important insights into early cancer development. Here, we provide a microanatomical survey of human PanINs by analysing 46 large samples of grossly normal human pancreas with a machine-learning pipeline for quantitative 3D histological reconstruction at single-cell resolution. To elucidate genetic relationships between and within PanINs, we developed a workflow in which 3D modelling guides multi-region microdissection and targeted and whole-exome sequencing. From these samples, we calculated a mean burden of 13 PanINs per cm3and extrapolated that the normal intact adult pancreas harbours hundreds of PanINs, almost all with oncogenic KRAShotspot mutations. We found that most PanINs originate as independent clones with distinct somatic mutation profiles. Some spatially continuous PanINs were found to contain multiple KRASmutations; computational and in situ analyses demonstrated that different KRASmutations localize to distinct cell subpopulations within these neoplasms, indicating their polyclonal origins. The extensive multifocality and genetic heterogeneity of PanINs raises important questions about mechanisms that drive precancer initiation and confer differential progression risk in the human pancreas. This detailed 3D genomic mapping of molecular alterations in human PanINs provides an empirical foundation for early detection and rational interception of pancreatic cancer.

Details

Language :
English
ISSN :
00280836 and 14764687
Issue :
Preprints
Database :
Supplemental Index
Journal :
Nature
Publication Type :
Periodical
Accession number :
ejs66226655
Full Text :
https://doi.org/10.1038/s41586-024-07359-3