Mechanistic study of PpIX accumulation using the JFCR39 cell panel revealed a role for dynamin 2-mediated exocytosis
Yuya Kitajima1, Takuya Ishii1, Takeo Kohda1
1SBI Pharmaceuticals Co., Ltd, Tokyo, Japan.
Abstract:
5-aminolevulinic acid (5-ALA) has recently been employed for photodynamic diagnosis (ALA-PDD) and photodynamic therapy (ALA-PDT) of various types of cancer because hyperproliferating tumor cells do not utilize oxidative phosphorylation and do not efficiently produce heme; instead, they accumulate protoporphyrin IX (PpIX), which is a precursor of heme that is activated by violet light irradiation that results in the production of red fluorescence and singlet oxygen. The efficiencies of ALA-PDD and ALA-PDT depend on the efficient cellular uptake of 5-ALA and the inefficient excretion of PpIX. We employed the JFCR39 cell panel to determine whether tumor cells originating from different tissues can produce and accumulate PpIX. We also investigated cellular factors/molecules involved in PpIX excretion by tumor cells with the JFCR39 cell panel. Unexpectedly, the expression levels of ABCG2, which has been considered to play a major role in PpIX extracellular transport, did not show a strong correlation with PpIX excretion levels in the JFCR39 cell panel, although an ABCG2 inhibitor significantly increased intracellular PpIX accumulation in several tumor cell lines. In contrast, the expression levels of dynamin 2, which is a cell membrane-associated molecule involved in exocytosis, were correlated with the PpIX excretion levels. Moreover, inhibitors of dynamin significantly suppressed PpIX excretion and increased the intracellular levels of PpIX. This is the first report demonstrating the causal relationship between dynamin 2 expression and PpIX excretion in tumor cells.
Insights
5-aminolevulinic acid (5-ALA) photodynamic therapy relies on protoporphyrin IX (PpIX) accumulation. This study found dynamin 2, not ABCG2, is key for PpIX excretion in tumor cells, impacting treatment efficacy.
Area of Science:
- Oncology
- Biochemistry
- Cell Biology
Background:
- 5-aminolevulinic acid (5-ALA) is used for cancer photodynamic diagnosis (PDD) and therapy (PDT).
- Tumor cells accumulate protoporphyrin IX (PpIX), a photosensitive heme precursor, when treated with 5-ALA.
- Efficient PpIX accumulation, dependent on cellular uptake and reduced excretion, is crucial for ALA-PDD/PDT efficacy.
Purpose of the Study:
- To investigate PpIX production and accumulation in diverse tumor cells using the JFCR39 cell panel.
- To identify cellular factors involved in PpIX excretion by tumor cells.
- To clarify the role of ABCG2 and dynamin 2 in PpIX transport.
Main Methods:
- Utilized the JFCR39 cell panel to analyze PpIX production and accumulation.
- Investigated the correlation between PpIX excretion and the expression of ABCG2 and dynamin 2.
- Assessed the impact of ABCG2 and dynamin inhibitors on intracellular PpIX levels.
Main Results:
- ABCG2 expression showed a weak correlation with PpIX excretion, despite ABCG2 inhibitors increasing PpIX accumulation in some cell lines.
- Dynamin 2 expression levels strongly correlated with PpIX excretion rates.
- Dynamin inhibitors significantly reduced PpIX excretion and increased intracellular PpIX accumulation.
Conclusions:
- Dynamin 2, a molecule involved in exocytosis, plays a significant role in tumor cell PpIX excretion.
- This study establishes a causal link between dynamin 2 expression and PpIX excretion, challenging the primary role of ABCG2.
- Understanding dynamin 2's role can optimize 5-ALA based cancer therapies.
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