<p>Pancreatic Ductal Adenocarcinoma (PDAC) is the third leading cause of cancer-related deaths in the U.S. Both rare and common germline variants contribute to PDAC risk. Here, we fine-map and functionally characterize a common PDAC risk signal at chr1p36.33 (tagged by rs13303010) identified through a genome wide association study (GWAS). One of the fine-mapped SNPs, rs13303160 (OR = 1.23 (95% CI 1.15-1.32), <i>P-</i>value = 2.74×10<sup>−9</sup>, LD r<sup>2</sup> = 0.93 with rs13303010 in 1000 G EUR samples) demonstrated allele-preferential gene regulatory activity in vitro and binding of JunB and JunD in vitro and in vivo. Expression Quantitative Trait Locus (eQTL) analysis identified <i>KLHL17</i> as a likely target gene underlying the signal. Proteomic analysis identified KLHL17 as a member of the Cullin-E3 ubiquitin ligase complex with vimentin and nestin as candidate substrates for degradation in PDAC-derived cells. In silico differential gene expression analysis of high and low <i>KLHL17</i> expressing GTEx pancreas samples suggested an association between lower <i>KLHL17</i> levels (risk associated) and pro-inflammatory pathways. We hypothesize that KLHL17 may mitigate cell injury and inflammation by recruiting nestin and vimentin for ubiquitination and degradation thereby influencing PDAC risk.</p>

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Allelic effects on KLHL17 expression underlie a pancreatic cancer genome-wide association signal at chr1p36.33

  • Katelyn E. Connelly,
  • Katherine Hullin,
  • Ehssan Abdolalizadeh,
  • Jun Zhong,
  • Daina Eiser,
  • Aidan O’Brien,
  • Irene Collins,
  • Sudipto Das,
  • Gerard Duncan,
  • Demetrius Albanes,
  • Gabriella Andreotti,
  • Alan A. Arslan,
  • Laura Beane-Freeman,
  • Sonja I. Berndt,
  • Julie E. Buring,
  • Daniele Campa,
  • Federico Canzian,
  • Yu Chen,
  • Charles C. Chung,
  • A. Heather Eliassen,
  • J. Michael Gaziano,
  • Edward L. Giovannucci,
  • Phyllis J. Goodman,
  • Christopher A. Haiman,
  • Belynda Hicks,
  • Amy Hutchinson,
  • Miranda R. Jones,
  • Verena Katzke,
  • Charles Kooperberg,
  • Peter Kraft,
  • I-Min Lee,
  • Loic LeMarchand,
  • Núria Malats,
  • Michelle R. Manning,
  • Satu Männistö,
  • Roger Milne,
  • Steven C. Moore,
  • Lorelei Mucci,
  • Alpa V. Patel,
  • Ulrike Peters,
  • Francisco X. Real,
  • Nathaniel Rothman,
  • Howard D. Sesso,
  • Veronica W. Setiawan,
  • Xiao-Ou Shu,
  • Debra Silverman,
  • Meir J. Stampfer,
  • Melissa C. Southey,
  • Geoffrey S. Tobias,
  • Therese Truong,
  • Caroline Um,
  • Kala Visvanathan,
  • Nicolas Wentzensen,
  • Emily White,
  • Chen Yuan,
  • Wei Zheng,
  • Jean Wactawski-Wende,
  • Walter C. Willett,
  • Rachael Z. Stoltzenberg-Solomon,
  • Samuel O. Antwi,
  • Paige M. Bracci,
  • Steven Gallinger,
  • Michael Goggins,
  • Manal Hassan,
  • Elizabeth A. Holly,
  • Rayjean J. Hung,
  • Donghui Li,
  • Rachel E. Neale,
  • Kari G. Rabe,
  • Harvey A. Risch,
  • Herbert Yu,
  • Stephen J. Chanock,
  • Rachael Z. Stolzenberg-Solomon,
  • Alison P. Klein,
  • Brian M. Wolpin,
  • Jason W. Hoskins,
  • Thorkell Andresson,
  • Jill P. Smith,
  • Laufey T. Amundadottir

摘要

Pancreatic Ductal Adenocarcinoma (PDAC) is the third leading cause of cancer-related deaths in the U.S. Both rare and common germline variants contribute to PDAC risk. Here, we fine-map and functionally characterize a common PDAC risk signal at chr1p36.33 (tagged by rs13303010) identified through a genome wide association study (GWAS). One of the fine-mapped SNPs, rs13303160 (OR = 1.23 (95% CI 1.15-1.32), P-value = 2.74×10−9, LD r2 = 0.93 with rs13303010 in 1000 G EUR samples) demonstrated allele-preferential gene regulatory activity in vitro and binding of JunB and JunD in vitro and in vivo. Expression Quantitative Trait Locus (eQTL) analysis identified KLHL17 as a likely target gene underlying the signal. Proteomic analysis identified KLHL17 as a member of the Cullin-E3 ubiquitin ligase complex with vimentin and nestin as candidate substrates for degradation in PDAC-derived cells. In silico differential gene expression analysis of high and low KLHL17 expressing GTEx pancreas samples suggested an association between lower KLHL17 levels (risk associated) and pro-inflammatory pathways. We hypothesize that KLHL17 may mitigate cell injury and inflammation by recruiting nestin and vimentin for ubiquitination and degradation thereby influencing PDAC risk.