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Interactions of Nickel(Ii) With Histones - Interactions of Nickel(Ii) With Ch3co-Thr-Glu-Ser-His-His-Lys-Nh2, a Peptide Modeling the Potential Metal Binding Site in the C-Tail Region of Histone H2a

  1. Author:
    Bal, W.
    Lukszo, J.
    Bialkowski, K.
    Kasprzak, K. S.
  2. Author Address

    Bal W NCI FREDERICK CANC RES & DEV CTR COMPARAT CARCINOGENESIS LAB BLDG 53 RM 205 FREDERICK, MD 21702 USA NIAID MOL STRUCT LAB ROCKVILLE, MD 20852 USA UNIV WROCLAW FAC CHEM PL-50383 WROCLAW POLAND
    1. Year: 1998
  1. Journal: Chemical Research in Toxicology
    1. 11
    2. 9
    3. Pages: 1014-1023
  2. Type of Article: Article
  1. Abstract:

    A combined ps-metric and spectroscopic (UV/vis, CD, NMR) study of the Ni(II) binding to CH3CO-Thr-Glu-Ser-His-His-Lys-NH2 (AcTESHHKam), a blocked hexapeptide modeling a part of the C-terminal sequence of the major variant of histone H2A (residues 120-125), revealed the formation of a pseudo-octahedral NiHL complex in weakly acidic and neutral solutions. Ni(II) is bound to the peptide through imidazole nitrogens on both of its histidine residues and the carboxylate of the side chain of glutamic acid. At higher pH, a series of square-planar complexes are formed. This process is accompanied by hydrolytic degradation of the peptide. At pH 7.4, the peptide hydrolyzes in a Ni(II)-assisted fashion, yielding the square-planar Ni(II) complex of SHHKam as the sole product detected by CD, MALDI-TOF MS, and HPLC. Quantitative analysis of complex stabilities indicates that the -TESHHK- motif is a very likely binding site for carcinogenic Ni(II) ions in the cell nucleus. The Ni(II)-assisted hydrolysis of the C-terminal chain of histone H2A may provide a novel mechanism of genotoxicity combining the damage to the nucleosome with the generation of further toxic Ni(II) species. [References: 58]

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