• Title of article

    The Mechanism of Fluorescence Quenching of Protein Photosensitizers Based on miniSOG During Internalization of the HER2 Receptor

  • Author/Authors

    Kuzichkina, E.O Shemyakin–Ovchinnikov Institute of Bioorganic Chemistry - Russian Academy of Sciences, Moscow, Russia , Shilova, O.N Shemyakin–Ovchinnikov Institute of Bioorganic Chemistry - Russian Academy of Sciences, Moscow, Russia , Deyev, S.M Shemyakin–Ovchinnikov Institute of Bioorganic Chemistry - Russian Academy of Sciences, Moscow, Russia

  • Pages
    8
  • From page
    87
  • To page
    94
  • Abstract
    The protein photosensitizer miniSOG is a promising agent for photodynamic therapy. The genetically encoded phototoxins 4D5scFv-miniSOG and DARPin-miniSOG specifically bind to the HER2 receptor overex-pressed on the surface of cancer cells and promote receptor-mediated internalization of HER2. We show that ingestion of proteins in a complex with the receptor reduces the fluorescent signal of the phototoxic module in endosomes. In order to clarify the mechanism of decrease in the fluorescence intensity of miniSOG-based proteins as they enter a cancer cell during internalization, we analyzed the influence of different factors, in-cluding low pH, proteolysis, cofactor reduction, and shielding, on changes in the fluorescence of photosensitizers. Shielding and absorption of miniSOG fluorescence by cell fluorophores, including cytochrome c,were found to contribute significantly to the changes in the fluorescent properties of miniSOG.
  • Keywords
    fluorescence , HER2 receptor , miniSOG , internalization , targeted protein photosensitizers
  • Journal title
    Acta Naturae
  • Serial Year
    2018
  • Record number

    2616458