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PMID: 42146349 已发表 · epublish 英语

A complete human pancreatic cancer genome.

bioRxiv : the preprint server for biology ·2026-05-10

Wagner J, Keskus AG, Oshima KK, Ranallo-Benavidez TR, McDaniel J, Sikic M, Lin D, Paulin LF, English AC, Sedlazeck FJ, Munding EM, Sanborn JZ, Carroll A, Chang PC, Cook DE, Shafin K, de Ligt J, Hassaine R, Cameron D, Catreux S, Lee Y, Murray L, Truong S, Brueffer C, Zimin AV, Cross E, McGowan M, Vernich M, Liss AS, Kocher JP, Stephens Z, Ahmad T, Bryant A, Dwarshuis N, He HJ, He Z, Olson ND, Thibaud-Nissen F, Antipov D, Koren S, Phillippy A, Musunuri RL, Narzisi G, Jain M, Wenger AM, Eacker S, Sahraeian SME, Boutros PC, Patel Y, Yamaguchi TN, McConnell J, Borchers M, Gerton JL, Kostos P, Guarracino A, Jehangir M, Benjamin H, Mootor MFE, Xu Y, Asri M, Miga KH, Park J, Paten B, Luo R, Zheng Z, Choi JY, Nguyen L, Vats P, Robinson DR, Vo JN, Gao S, Murtaza G, Mason CE, Cheng H, Barthel FP, Xiao C, Logsdon GA, Kolmogorov M, Zook JM

摘要

Cancer genome sequencing is essential for understanding tumor evolution and advancing precision medicine.1 However, reference gaps and germline variants obscure detection of small and large somatic variants and methylation in repetitive regions.1-3 It is common for tumor cells to gain or lose chromosome arms due to somatic structural changes that occur inside highly repetitive satellite DNA sequences in the centromeres.4 To identify the full spectrum of somatic variants, including complex rearrangements, we construct and curate near-complete, haplotype-resolved assemblies of the most recent common ancestor of an early-passage broadly-consented hypodiploid pancreatic cancer cell line and matched normal tissues. The tumor assembly completely recapitulates all 35 tumor chromosomes observed with karyotyping, with multiple translocation-induced hybrid chromosomes. The hybrid chromosomes contain putative functional dicentric and fused centromeres, nested foldback inversions causing 14 breakpoints with a haplotype switch in a single event, and centromeric satellite tandem duplications up to 136 kbp. Direct comparison of tumor and normal assembly haplotypes uncovers >7,000 variants altering >1 Mbp of sequence in repetitive regions that have been hidden by reference gaps and germline variants. 44 % of somatic small variants change representation because they alter germline variants on GRCh38, impacting mutational signatures and kataegis/omikli clusters. Most somatic LINE insertions originate from two hypomethylated non-reference germline LINE insertions, highlighting their impact on insertion mutation burden. These assemblies demonstrate that centromeric, acrocentric, and telomeric regions conventionally excluded from analysis harbor extensive somatic and epigenetic changes. Resolving complete tumor genomes enables a deeper understanding of cancer structural plasticity and the endpoints of breakage-fusion-bridge cycles. These assembled, curated paired normal-tumor benchmarks will serve as a critical foundation for developing future algorithms to characterize the most intractable regions of cancer genomes.

文献信息
期刊
bioRxiv : the preprint server for biology
期刊简称
bioRxiv
ISSN
2692-8205
发表日期
2026-05-10
语言
英语
国家/地区
United States
NLM ID
101680187
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