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  • Dymerska, Dagmara (8)
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Germline variants of CYBA and TRPM4 predispose to familial colorectal cancer (2022)
Zhu, Lizhen ; Miao, Beiping ; Dymerska, Dagmara ; Kuswik, Magdalena ; Bueno-Martínez, Elena ; Sanoguera-Miralles, Lara ; Velasco, Eladio A. ; Paramasivam, Nagarajan ; Schlesner, Matthias ; Kumar, Abhishek ; Yuan, Ying ; Lubinski, Jan ; Bandapalli, Obul Reddy ; Hemminki, Kari ; Försti, Asta
Simple Summary Whole-genome sequencing and bioinformatics analysis on unique colorectal cancer families revealed two attractive candidate predisposition genes, CYBA and TRPM4, each with a loss-of-function variant. Supported by our functional studies, we suggest that the two gene defects mechanistically involve intestinal barrier integrity through reactive oxygen species and mucus biology, which converges in chronic bowel inflammation, a known risk factor for colorectal cancer. Abstract Familial colorectal cancer (CRC) is only partially explained by known germline predisposing genes. We performed whole-genome sequencing in 15 Polish families of many affected individuals, without mutations in known CRC predisposing genes. We focused on loss-of-function variants and functionally characterized them. We identified a frameshift variant in the CYBA gene (c.246delC) in one family and a splice site variant in the TRPM4 gene (c.25–1 G > T) in another family. While both variants were absent or extremely rare in gene variant databases, we identified four additional Polish familial CRC cases and two healthy elderly individuals with the CYBA variant (odds ratio 2.46, 95% confidence interval 0.48–12.69). Both variants led to a premature stop codon and to a truncated protein. Functional characterization of the variants showed that knockdown of CYBA or TRPM4 depressed generation of reactive oxygen species (ROS) in LS174T and HT-29 cell lines. Knockdown of TRPM4 resulted in decreased MUC2 protein production. CYBA encodes a component in the NADPH oxidase system which generates ROS and controls, e.g., bacterial colonization in the gut. Germline CYBA variants are associated with early onset inflammatory bowel disease, supported with experimental evidence on loss of intestinal mucus barrier function due to ROS deficiency. TRPM4 encodes a calcium-activated ion channel, which, in a human colonic cancer cell line, controls calcium-mediated secretion of MUC2, a major component of intestinal mucus barrier. We suggest that the gene defects in CYBA and TRPM4 mechanistically involve intestinal barrier integrity through ROS and mucus biology, which converges in chronic bowel inflammation.
Whole-exome sequencing identifies a novel germline variant in PTK7 gene in familial colorectal cancer (2022)
Miao, Beiping ; Skopelitou, Diamanto ; Srivastava, Aayushi ; Giangiobbe, Sara ; Dymerska, Dagmara ; Paramasivam, Nagarajan ; Kumar, Abhishek ; Kuświk, Magdalena ; Kluźniak, Wojciech ; Paszkowska-Szczur, Katarzyna ; Schlesner, Matthias ; Lubinski, Jan ; Hemminki, Kari ; Försti, Asta ; Bandapalli, Obul Reddy
Whole exome sequencing identifies novel germline variants of SLC15A4 gene as potentially cancer predisposing in familial colorectal cancer (2022)
Skopelitou, Diamanto ; Srivastava, Aayushi ; Miao, Beiping ; Kumar, Abhishek ; Dymerska, Dagmara ; Paramasivam, Nagarajan ; Schlesner, Matthias ; Lubinski, Jan ; Hemminki, Kari ; Försti, Asta ; Reddy Bandapalli, Obul
About 15% of colorectal cancer (CRC) patients have first-degree relatives affected by the same malignancy. However, for most families the cause of familial aggregation of CRC is unknown. To identify novel high-to-moderate-penetrance germline variants underlying CRC susceptibility, we performed whole exome sequencing (WES) on four CRC cases and two unaffected members of a Polish family without any mutation in known CRC predisposition genes. After WES, we used our in-house developed Familial Cancer Variant Prioritization Pipeline and identified two novel variants in the solute carrier family 15 member 4 (SLC15A4) gene. The heterozygous missense variant, p. Y444C, was predicted to affect the phylogenetically conserved PTR2/POT domain and to have a deleterious effect on the function of the encoded peptide/histidine transporter. The other variant was located in the upstream region of the same gene (GRCh37.p13, 12_129308531_C_T; 43 bp upstream of transcription start site, ENST00000266771.5) and it was annotated to affect the promoter region of SLC15A4 as well as binding sites of 17 different transcription factors. Our findings of two distinct variants in the same gene may indicate a synergistic up-regulation of SLC15A4 as the underlying genetic cause and implicate this gene for the first time in genetic inheritance of familial CRC.
A novel low-risk germline variant in the SH2 domain of the SRC gene affects multiple pathways in familial colorectal cancer (2021)
Skopelitou, Diamanto ; Miao, Beiping ; Srivastava, Aayushi ; Kumar, Abhishek ; Kuświk, Magdalena ; Dymerska, Dagmara ; Paramasivam, Nagarajan ; Schlesner, Matthias ; Lubiński, Jan ; Hemminki, Kari ; Försti, Asta ; Bandapalli, Obul Reddy
A rare large duplication of MLH1 identified in Lynch syndrome (2021)
Kumar, Abhishek ; Paramasivam, Nagarajan ; Bandapalli, Obul Reddy ; Schlesner, Matthias ; Chen, Tianhui ; Sijmons, Rolf ; Dymerska, Dagmara ; Golebiewska, Katarzyna ; Kuswik, Magdalena ; Lubinski, Jan ; Hemminki, Kari ; Försti, Asta
Whole exome sequencing identifies APCDD1 and HDAC5 genes as potentially cancer predisposing in familial colorectal cancer (2021)
Skopelitou, Diamanto ; Miao, Beiping ; Srivastava, Aayushi ; Kumar, Abhishek ; Kuświk, Magdalena ; Dymerska, Dagmara ; Paramasivam, Nagarajan ; Schlesner, Matthias ; Lubinski, Jan ; Hemminki, Kari ; Försti, Asta ; Bandapalli, Obul
Cancer predisposition genes in cancer-free families (2020)
Zheng, Guoqiao ; Catalano, Calogerina ; Bandapalli, Obul Reddy ; Paramasivam, Nagarajan ; Chattopadhyay, Subhayan ; Schlesner, Matthias ; Sijmons, Rolf ; Hemminki, Akseli ; Dymerska, Dagmara ; Lubinski, Jan ; Hemminki, Kari ; Försti, Asta
Pedigree based DNA sequencing pipeline for germline genomes of cancer families (2016)
Försti, Asta ; Kumar, Abhishek ; Paramasivam, Nagarajan ; Schlesner, Matthias ; Catalano, Calogerina ; Dymerska, Dagmara ; Lubinski, Jan ; Eils, Roland ; Hemminki, Kari
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