The interaction of synthetic dihydroxyphenylalanine (DOPA) melanin (DM) with nitrite ions, NO2
–, in
the pH 3.6–7.0 range, has been investigated using electron paramagnetic resonance (EPR). We found that especially
at pH <5.5 (from ca. 5.5 to 3.6) the reaction of DM with nitrite generated large quantities of new melanin
radicals, which implies the involvement of nitrous acid, HNO2, in the radical formation process. Measurements
carried out at constant pH of 3.6 showed that the melanin signal increased together with nitrite concentration,
reaching a plateau level which was more than fourfold larger compared to the initial signal amplitude observed
in a nitrite-free buffer of the same pH. The effects of nitrite and DM concentrations on the melanin-free radical
content were also investigated. It is proposed that the radicals are generated by one electron oxidation of
melanin ortho-hydroquinone groups to ortho-semiquinones by HNO2 or related nitrogen oxides such as NO2
• radicals. The possible involvement of nitric oxide (•NO) and peroxynitrite (ONOO–) in DM oxidation was also
examined. In air-free solutions, nitric oxide per se did not generate melanin radicals; however, in the presence
of oxygen a marked increase in the melanin EPR signal intensity was observed. This result is interpreted in
terms of the generation of radicals via the oxidation of DM by peroxynitrite. Our fi ndings suggest that melanin
can function as a natural scavenger of nitrous acid and some nitrous acid-derived species. This property may
be relevant to physiological functions of melanin pigments in vivo.
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