4.6 Article

Probing the Motional Behavior of Eumelanin and Pheomelanin with Solid-State NMR Spectroscopy: New Insights into the Pigment Properties

期刊

CHEMISTRY-A EUROPEAN JOURNAL
卷 18, 期 34, 页码 10689-10700

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.201200277

关键词

melanin compounds; molecular dynamics; natural products; NMR spectroscopy; solid-state NMR spectroscopy

资金

  1. TGIR RMN THC [Fr3050]
  2. European Commission [IEF-FP7-PEOPLE2008-237339]
  3. NSF CAREER [CHE-0847375]
  4. Direct For Mathematical & Physical Scien
  5. Division Of Chemistry [0847375] Funding Source: National Science Foundation

向作者/读者索取更多资源

Melanin is the most widespread pigment in the animal kingdom. Despite its importance, its detailed structure and overall molecular architecture remain elusive. Both eumelanin (black) and pheomelanin (red) occur in the human body. These two melanin compounds show very different responses to UV-radiation exposure, which could relate to their microscopic features. Herein, the structural properties and motional behavior of natural eu- and pheomelanin extracted from black and red human hair are investigated by means of solid-state NMR spectroscopy. Several 1D and 2D NMR spectroscopic techniques were combined to highlight the differences between the two forms of the pigment. The quantitative analysis of the 1H NMR wide-line spectra extracted from 2D 1H13C LG-WISE experiments revealed the presence of two dynamically distinguishable components in both forms. Remarkably, the more mobile fraction of the pigment showed a higher mobility with respect to the proteinaceous components that coexist in the melanosome, which is particularly evident for the red pigment. An explanation of the observed effects takes into account the different architecture of the proteinaceous matrix that constitutes the physical substrate onto which melanin polymerizes within the eu- and pheomelanosomes. Further insight into the molecular structure of the more mobile fraction of pheomelanin was also obtained by means of the analysis of 2D 1H13C INEPT experiments. Our view is that not only structural features inherent in the pure pigment, but also the role of the matrix structure in defining the overall melanin supramolecular arrangement and the resulting dynamic behavior of the two melanin compounds should be taken into account to explain their functions. The reported results could pave a new way toward the explanation of the molecular origin of the differences in the photoprotection activity displayed by black and red melanin pigments.

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