How Bulky of Base Adducts can be Responsible for Clastogenicity rather than Mutagenicity?

Authors

  • Yu F. Sasaki* Department of Pharmaceutical Health Care, Faculty of Pharmaceutical Sciences, Himeji Dokkyo University, Japan Author
  • Kobune M Material and Biological Engineering Course, Department of Industrial Systems Engineering, National Institute of Technology Hachinohe College, Japan Author
  • Furuya K Mechanical and Medical Engineering Course, Department of Industrial Systems, Engineering, National Institute of Technology Hachinohe College, Aomori, Japan Author
  • Kawaguchi S Material and Biological Engineering Course, Department of Industrial Systems Engineering, National Institute of Technology Hachinohe College, Japan Author
  • Kadoma Y Material and Biological Engineering Course, Department of Industrial Systems Engineering, National Institute of Technology Hachinohe College, Japan Author
  • Arai H Material and Biological Engineering Course, Department of Industrial Systems Engineering, National Institute of Technology Hachinohe College, Japan Author
  • Yamamoto A Material and Biological Engineering Course, Department of Industrial Systems Engineering, National Institute of Technology Hachinohe College, Japan Author
  • Honma T Material and Biological Engineering Course, Department of Industrial Systems Engineering, National Institute of Technology Hachinohe College, Japan Author
  • Sato K Material and Biological Engineering Course, Department of Industrial Systems Engineering, National Institute of Technology Hachinohe College, Japan Author
  • Saito T Material and Biological Engineering Course, Department of Industrial Systems Engineering, National Institute of Technology Hachinohe College, Japan Author
  • Hasegawa A Material and Biological Engineering Course, Department of Industrial Systems Engineering, National Institute of Technology Hachinohe College, Japan Author
  • Matsumoto K Material and Biological Engineering Course, Department of Industrial Systems Engineering, National Institute of Technology Hachinohe College, Japan Author
  • Kudou S Material and Biological Engineering Course, Department of Industrial Systems Engineering, National Institute of Hachinohe College, JapanTechnology Author
  • Kobayashi R Department of Pharmaceutical Health Care, Faculty of Pharmaceutical Sciences, Himeji Dokkyo University, Japan Author
  • Galbreath HE Department of General Science and Education, National Institute of Technology, Hachinohe College, Japan Author
  • Kikuchi Y Department of General Science and Education, National Institute of Technology, Hachinohe College, Japan Author
  • Nakamura T Department of Pharmaceutical Health Care, Faculty of Pharmaceutical Sciences, Himeji Dokkyo University, Japan Author

DOI:

https://doi.org/10.23880/act-16000256

Keywords:

Bulky adducts, n-Alkyl methanesulfonates, Slowly growing TK mutant, Normally growing TK mutants, Clastogenicity, Mutagenicity

Abstract

Two types of TK mutants are induced by genotoxic factors; normally growing (NG) TK mutants due to point mutations of targeted TK locus, and slowly growing (SG) mutants due to gross structural changes involving the growth-regulating gene outside targeted TK locus. In this study, human lymphoblstoid WTK1 cells were used to consider how bulky n- alkylated bases can induce SG mutants. For this purpose, n-alkyl methanesulfonates (AMS) having an n-alkyl group with 3-7 carbons [n-propy methanesulfonate (PMS), n-butyl methanesulfonate (BMS), n-pentyl methanesulfonate (PeMS), n- hexyl methanesulfonate (HexMS), and heptyl methanesulfonate(HepMS)] were synthesized. n-alkyl methanesulfonates having n-alkyl groups with 1-7 carbons induced NG mutants, but n-alkyl methanesulfonates having n-alkyl groups with ≥4 carbons but not with ≤3 carbons induced SG mutants. n-Alkyl methanesulfonates having n-Alkyl groups with ≥4 carbons have been shown to induce bulky adducts that cause disturbances to the helical DNA structure and are removed by nucleotide excision repair. It could be considered that n-alkyl groups with ≥4 carbons causing disturbances to the helical DNA structure induce SG mutants to result in clastogenicity rather than mutagenicity.

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Published

2023-02-13

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