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Effects of nickel(II) on nuclear protein binding to DNA in intact mammalian cells

Cancer Biochemistry Biophysics
|May 1, 1987
PubMed

Insights

Nickel(II) exposure increases DNA-protein binding in cells, potentially contributing to cancer. This study investigated nickel

Area of Science:

  • Environmental Toxicology
  • Molecular Biology
  • Carcinogenesis

Background:

  • Nickel(II) is an intracellular carcinogen.
  • Nickel's carcinogenic action may involve altered DNA-protein binding.
  • Understanding nickel's molecular mechanisms is crucial for risk assessment.

Purpose of the Study:

  • To investigate the effect of ionic nickel on DNA-protein binding in Chinese hamster ovary cells.
  • To elucidate the types of proteins affected by nickel-induced DNA binding.
  • To explore the implications of altered DNA-protein binding in nickel-induced carcinogenesis.

Main Methods:

  • Utilized Chinese hamster ovary cells exposed to nickel(II).
  • Employed three distinct chromatin isolation techniques.
  • Analyzed DNA-protein interactions using SDS-polyacrylamide gel electrophoresis and radiolabeling.

Main Results:

  • Nickel-treated cells showed significantly increased association of methionine-labeled proteins with DNA.
  • Proteins bound to DNA were resistant to RNase but sensitive to protease, primarily nonhistone chromosomal proteins.
  • Nickel did not act as a classical bifunctional crosslinking agent, as SDS disrupted the enhanced binding.

Conclusions:

  • Ionic nickel alters DNA-protein binding, predominantly involving nonhistone chromosomal proteins.
  • This alteration may disrupt normal DNA replication and gene expression regulation.
  • Nickel-induced changes in DNA-protein interactions represent a potential mechanism for its carcinogenic activity.

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