TY - JOUR
T1 - Combined loss of CDH1 and downstream regulatory sequences drive early-onset diffuse gastric cancer and increase penetrance of hereditary diffuse gastric cancer
AU - Solve-RD DITF-GENTURIS
AU - São José, Celina
AU - Garcia-Pelaez, José
AU - Ferreira, Marta
AU - Arrieta, Oscar
AU - André, Ana
AU - Martins, Nelson
AU - Solís, Samantha
AU - Martínez-Benítez, Braulio
AU - Ordóñez-Sánchez, María Luisa
AU - Rodríguez-Torres, Maribel
AU - Sommer, Anna K.
AU - te Paske, Iris B.A.W.
AU - Caldas, Carlos
AU - Tischkowitz, Marc
AU - Tusié, Maria Teresa T.
AU - Aretz, Stefan
AU - Capella, Gabriel
AU - Castedo, Sérgio
AU - de Voer, Richarda M.
AU - Evans, Gareth
AU - Fernandes, Susana
AU - Garcia-Pelaez, José
AU - Garrido, Luzia
AU - Holinski-Feder, Elke
AU - Hoogerbrugge, Nicoline
AU - Huntsman, David
AU - Jahn, Arne
AU - Kets, C. Marleen
AU - Laner, Andreas
AU - Ligtenberg, Marjolijn
AU - Meinhardt, Andrea
AU - Mensenkamp, Arjen
AU - Oliveira, Carla
AU - Peters, Sophia
AU - Quintana, Isabel
AU - Schröck, Evelin
AU - Sommer, Anna
AU - Spier, Isabel
AU - Spruijt, Liesbeth
AU - Steinke-Lange, Verena
AU - Paske, Iris te
AU - Valle, Laura
AU - van der Post, Rachel
AU - van Herwaarden, Yasmijn
AU - van Zelst-Stams, Wendy
AU - William, Doreen
AU - Hoogerbrugge, Nicoline
AU - Demidov, German
AU - de Voer, Richarda M.
AU - Laurie, Steve
N1 - Publisher Copyright:
© 2023, The Author(s).
PY - 2023/9
Y1 - 2023/9
N2 - Background: Germline CDH1 pathogenic or likely pathogenic variants cause hereditary diffuse gastric cancer (HDGC). Once a genetic cause is identified, stomachs’ and breasts’ surveillance and/or prophylactic surgery is offered to asymptomatic CDH1 carriers, which is life-saving. Herein, we characterized an inherited mechanism responsible for extremely early-onset gastric cancer and atypical HDGC high penetrance. Methods: Whole-exome sequencing (WES) re-analysis was performed in an unsolved HDGC family. Accessible chromatin and CDH1 promoter interactors were evaluated in normal stomach by ATAC-seq and 4C-seq, and functional analysis was performed using CRISPR-Cas9, RNA-seq and pathway analysis. Results: We identified a germline heterozygous 23 Kb CDH1-TANGO6 deletion in a family with eight diffuse gastric cancers, six before age 30. Atypical HDGC high penetrance and young cancer-onset argued towards a role for the deleted region downstream of CDH1, which we proved to present accessible chromatin, and CDH1 promoter interactors in normal stomach. CRISPR-Cas9 edited cells mimicking the CDH1-TANGO6 deletion display the strongest CDH1 mRNA downregulation, more impacted adhesion-associated, type-I interferon immune-associated and oncogenic signalling pathways, compared to wild-type or CDH1-deleted cells. This finding solved an 18-year family odyssey and engaged carrier family members in a cancer prevention pathway of care. Conclusion: In this work, we demonstrated that regulatory elements lying down-stream of CDH1 are part of a chromatin network that control CDH1 expression and influence cell transcriptome and associated signalling pathways, likely explaining high disease penetrance and very young cancer-onset. This study highlights the importance of incorporating scientific–technological updates and clinical guidelines in routine diagnosis, given their impact in timely genetic diagnosis and disease prevention. Graphical abstract: [Figure not available: see fulltext.]
AB - Background: Germline CDH1 pathogenic or likely pathogenic variants cause hereditary diffuse gastric cancer (HDGC). Once a genetic cause is identified, stomachs’ and breasts’ surveillance and/or prophylactic surgery is offered to asymptomatic CDH1 carriers, which is life-saving. Herein, we characterized an inherited mechanism responsible for extremely early-onset gastric cancer and atypical HDGC high penetrance. Methods: Whole-exome sequencing (WES) re-analysis was performed in an unsolved HDGC family. Accessible chromatin and CDH1 promoter interactors were evaluated in normal stomach by ATAC-seq and 4C-seq, and functional analysis was performed using CRISPR-Cas9, RNA-seq and pathway analysis. Results: We identified a germline heterozygous 23 Kb CDH1-TANGO6 deletion in a family with eight diffuse gastric cancers, six before age 30. Atypical HDGC high penetrance and young cancer-onset argued towards a role for the deleted region downstream of CDH1, which we proved to present accessible chromatin, and CDH1 promoter interactors in normal stomach. CRISPR-Cas9 edited cells mimicking the CDH1-TANGO6 deletion display the strongest CDH1 mRNA downregulation, more impacted adhesion-associated, type-I interferon immune-associated and oncogenic signalling pathways, compared to wild-type or CDH1-deleted cells. This finding solved an 18-year family odyssey and engaged carrier family members in a cancer prevention pathway of care. Conclusion: In this work, we demonstrated that regulatory elements lying down-stream of CDH1 are part of a chromatin network that control CDH1 expression and influence cell transcriptome and associated signalling pathways, likely explaining high disease penetrance and very young cancer-onset. This study highlights the importance of incorporating scientific–technological updates and clinical guidelines in routine diagnosis, given their impact in timely genetic diagnosis and disease prevention. Graphical abstract: [Figure not available: see fulltext.]
KW - CDH1
KW - Copy number variants
KW - Deletion
KW - Hereditary diffuse gastric cancer
KW - Regulatory elements
KW - Type-I interferon immune response
UR - https://www.scopus.com/pages/publications/85160585792
U2 - 10.1007/s10120-023-01395-0
DO - 10.1007/s10120-023-01395-0
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C2 - 37249750
AN - SCOPUS:85160585792
SN - 1436-3291
VL - 26
SP - 653
EP - 666
JO - Gastric Cancer
JF - Gastric Cancer
IS - 5
ER -