Lysosomal cathepsin initiates apoptosis, which is regulated by photodamage to Bcl-2 at mitochondria in photodynamic therapy using a novel photosensitizer, ATX-s10 (Na)

  • Authors:
    • Shuji Ichinose
    • Jitsuo Usuda
    • Takeshi Hirata
    • Tatsuya Inoue
    • Keishi Ohtani
    • Sachio Maehara
    • Mitsuhiro Kubota
    • Kentarou Imai
    • Yoshihiko Tsunoda
    • Yukari Kuroiwa
    • Kimito Yamada
    • Hidemitsu Tsutsui
    • Kinya Furukawa
    • Tetsuya Okunaka
    • Nancy L. Oleinick
    • Harubumi Kato
  • View Affiliations

  • Published online on: August 1, 2006     https://doi.org/10.3892/ijo.29.2.349
  • Pages: 349-355
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Abstract

ATX-s10 is a novel and second-generation photosensitizer for photodynamic therapy (PDT). In order to conduct clinical trials of ATX-s10-PDT and/or extend its clinical applications, it is very important to elucidate the mechanisms of the action of ATX-s10-PDT. We examined the apoptic response against ATX-s10-PDT using a Bcl-2 or Bcl-2 mutant overexpressing cells. Using fluorescent microscopy, ATX-s10 localized not only to mitochondria but also to lysosomes and possibly other intracellular organelles, but not to the plasma membrane or the nucleus. These results suggest that ATX-s10-PDT can damage mitochondria and lysosomes. By Western blot analysis, ATX-s10-PDT damaged Bcl-2, which localized preferentially at mitochondrial membranes, and caused Bcl-2 to cross-link immediately after laser irradiation. However, ATX-s10-PDT was not able to rapidly induce morphologically typical apoptosis (i.e. chromatin condensation and fragmentation) as PDT using mitochondria targeted photosensitizers, such as phthalocyanine 4 (Pc 4). Pharmacological inhibitions of lysosomal cytokine protease cathepsins, such as cathepsin B and D, protected MCF-7c3 cells (human breast cancer cells expressing stably transfected procaspase-3) from apoptosis caused by ATX-s10-PDT. Overexpression of wild-type Bcl-2 or Bcl-2Δ33-54 resulted in relative resistance of cells to ATX-s10-PDT, as assessed by the degree of morphological apoptosis or loss of clonogenicity. We conclude that lysosomal damage by ATX-s10-PDT can initiate apoptotic response and this apoptotic pathway can be regulated by photodamage to Bcl-2 via mitochondrial damage.

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August 2006
Volume 29 Issue 2

Print ISSN: 1019-6439
Online ISSN:1791-2423

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Spandidos Publications style
Ichinose S, Usuda J, Hirata T, Inoue T, Ohtani K, Maehara S, Kubota M, Imai K, Tsunoda Y, Kuroiwa Y, Kuroiwa Y, et al: Lysosomal cathepsin initiates apoptosis, which is regulated by photodamage to Bcl-2 at mitochondria in photodynamic therapy using a novel photosensitizer, ATX-s10 (Na). Int J Oncol 29: 349-355, 2006.
APA
Ichinose, S., Usuda, J., Hirata, T., Inoue, T., Ohtani, K., Maehara, S. ... Kato, H. (2006). Lysosomal cathepsin initiates apoptosis, which is regulated by photodamage to Bcl-2 at mitochondria in photodynamic therapy using a novel photosensitizer, ATX-s10 (Na). International Journal of Oncology, 29, 349-355. https://doi.org/10.3892/ijo.29.2.349
MLA
Ichinose, S., Usuda, J., Hirata, T., Inoue, T., Ohtani, K., Maehara, S., Kubota, M., Imai, K., Tsunoda, Y., Kuroiwa, Y., Yamada, K., Tsutsui, H., Furukawa, K., Okunaka, T., Oleinick, N. L., Kato, H."Lysosomal cathepsin initiates apoptosis, which is regulated by photodamage to Bcl-2 at mitochondria in photodynamic therapy using a novel photosensitizer, ATX-s10 (Na)". International Journal of Oncology 29.2 (2006): 349-355.
Chicago
Ichinose, S., Usuda, J., Hirata, T., Inoue, T., Ohtani, K., Maehara, S., Kubota, M., Imai, K., Tsunoda, Y., Kuroiwa, Y., Yamada, K., Tsutsui, H., Furukawa, K., Okunaka, T., Oleinick, N. L., Kato, H."Lysosomal cathepsin initiates apoptosis, which is regulated by photodamage to Bcl-2 at mitochondria in photodynamic therapy using a novel photosensitizer, ATX-s10 (Na)". International Journal of Oncology 29, no. 2 (2006): 349-355. https://doi.org/10.3892/ijo.29.2.349