AI Article Synopsis

  • Glioblastoma multiforme are aggressive tumors with a poor survival prognosis, prompting research into therapies like photodynamic treatment using hypericin.
  • Hypericin affects PKCδ phosphorylation in human glioma U87 MG cells, increasing it at specific sites before light application, while light exposure alters these phosphorylation patterns, leading to cell death.
  • The study indicates that the localization and phosphorylation of PKCδ play crucial roles in the balance between cell survival and apoptosis in glioma cells, particularly under oxidative stress from light treatment.

Article Abstract

Glioblastoma multiforme are considered to be aggressive high-grade tumors with poor prognosis for patient survival. Photodynamic therapy is one of the adjuvant therapies which has been used for glioblastoma multiforme during last decade. Hypericin, a photosensitizer, can be employed in this treatment. We have studied the effect of hypericin on PKCδ phosphorylation in U87 MG cells before and after light application. Hypericin increased PKCδ phosphorylation at tyrosine 155 in the regulatory domain and serine 645 in the catalytic domain. However, use of the light resulted in apoptosis, decreased phosphorylation of tyrosine 155 and enhanced serine 645. The PKCδ localization and phosphorylation of regulatory and catalytic domains were shown to play a distinct role in the anti-apoptotic response of glioma cells. We hypothesized that PKCδ phosphorylated at the regulatory domain is primarily present in the cytoplasm and in mitochondria before irradiation, and it may participate in Bcl-2 phosphorylation. After hypericin and light application, PKCδ phosphorylated at a regulatory domain which is in the nucleus. In contrast, PKCδ phosphorylated at the catalytic domain may be mostly active in the nucleus before irradiation, but active in the cytoplasm after the irradiation. In summary, light-induced oxidative stress significantly regulates PKCδ pro-survival and pro-apoptotic activity in glioma cells by its phosphorylation at serine 645 and tyrosine 155.

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Source
http://dx.doi.org/10.1016/j.cellsig.2017.02.020DOI Listing

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