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Whole Genome Sequencing Analysis of Model Organisms Elucidates the Association Between Environmental Factors and Human Cancer Development.

Authors :
Hasegawa S
Shoji Y
Kato M
Elzawahry A
Nagai M
Gi M
Suzuki S
Wanibuchi H
Mimaki S
Tsuchihara K
Totsuka Y
Source :
International journal of molecular sciences [Int J Mol Sci] 2024 Oct 17; Vol. 25 (20). Date of Electronic Publication: 2024 Oct 17.
Publication Year :
2024

Abstract

Determining a novel etiology and mechanism of human cancer requires extraction of characteristic mutational signatures derived from chemical substances. This study explored the mutational signatures of N -nitroso bile acid conjugates using Salmonella strains. Exposing S. typhimurium TA1535 to N -nitroso-glycine/taurine bile acid conjugates induced a predominance of C:G to T:A transitions. Two mutational signatures, B1 and B2, were extracted. Signature B1 is associated with N -nitroso-glycine bile acid conjugates, while Signature B2 is linked to N -nitroso-taurine bile acid conjugates. Signature B1 revealed a strong transcribed strand bias with GCC and GCT contexts, and the mutation pattern of N -nitroso-glycine bile acid conjugates in YG7108, which lacks O <superscript>6</superscript> -methylguanine DNA methyltransferases, matched that of the wild-type strain TA1535, suggesting that O <superscript>6</superscript> -methyl-deoxyguanosine contributes to mutations in the relevant regions. COSMIC database-based similarity analysis revealed that Signature B1 closely resembled SBS42, which is associated with occupational cholangiocarcinoma caused by overexposure to 1,2-dichlolopropane (1,2-DCP) and/or dichloromethane (DCM). Moreover, the inflammatory response pathway was induced by 1,2-DCP exposure in a human cholangiocyte cell line, and iNOS expression was positive in occupational cholangiocarcinomas. These results suggest that 1,2-DCP triggers an inflammatory response in biliary epithelial cells by upregulating iNOS and N -nitroso-glycine bile acid conjugate production, resulting in cholangiocarcinoma via DNA adduct formation.

Details

Language :
English
ISSN :
1422-0067
Volume :
25
Issue :
20
Database :
MEDLINE
Journal :
International journal of molecular sciences
Publication Type :
Academic Journal
Accession number :
39456974
Full Text :
https://doi.org/10.3390/ijms252011191