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MEK reduces cancer-specific PpIX accumulation through the RSK-ABCB1 and HIF-1α-FECH axes
Vipin Shankar Chelakkot1, Kaiwen Liu1, Ema Yoshioka1
1Division of BioMedical Sciences, Faculty of Medicine, Memorial University of Newfoundland, 300 Prince Philip Drive, St. John's, NL, A1B 3V6, Canada.
Abstract:
The efficacy of aminolevulinic acid (5-ALA)-based photodynamic diagnosis (5-ALA-PDD) and photodynamic therapy (5-ALA-PDT) is dependent on 5-ALA-induced cancer-specific accumulation of protoporphyrin IX (PpIX). We previously reported that inhibition of oncogenic Ras/MEK increases PpIX accumulation in cancer cells by reducing PpIX efflux through ATP-binding cassette sub-family B member 1 (ABCB1) and ferrochelatase (FECH)-catalysed PpIX conversion to haem. Here, we sought to identify the downstream pathways of Ras/MEK involved in the regulation of PpIX accumulation via ABCB1 and FECH. First, we demonstrated that Ras/MEK activation reduced PpIX accumulation in RasV12-transformed NIH3T3 cells and HRAS transgenic mice. Knockdown of p90 ribosomal S6 kinases (RSK) 2, 3, or 4 increased PpIX accumulation in RasV12-transformed NIH3T3 cells. Further, treatment with an RSK inhibitor reduced ABCB1 expression and increased PpIX accumulation. Moreover, HIF-1α expression was reduced when RasV12-transformed NIH3T3 cells were treated with a MEK inhibitor, demonstrating that HIF-1α is a downstream element of MEK. HIF-1α inhibition decreased FECH activity and increased PpIX accumulation. Finally, we demonstrated the involvement of RSKs and HIF-1α in the regulation of PpIX accumulation in human cancer cell lines. These results demonstrate that the RSK-ABCB1 and HIF-1α-FECH axes are the downstream pathways of Ras/MEK involved in the regulation of PpIX accumulation.
Insights
Inhibition of Ras/MEK signaling enhances aminolevulinic acid (5-ALA)-induced protoporphyrin IX (PpIX) accumulation in cancer cells. This occurs via RSK-ABCB1 and HIF-1α-FECH pathways, crucial for 5-ALA photodynamic diagnosis and therapy efficacy.
Area of Science:
- Oncology
- Biochemistry
- Molecular Biology
Background:
- Aminolevulinic acid (5-ALA) efficacy in photodynamic diagnosis (PDD) and therapy (PDT) relies on cancer-specific protoporphyrin IX (PpIX) accumulation.
- Previous work showed Ras/MEK inhibition boosts PpIX levels by reducing efflux via ABCB1 and FECH-mediated conversion to heme.
Purpose of the Study:
- To identify downstream pathways of Ras/MEK signaling that regulate PpIX accumulation through ABCB1 and ferrochelatase (FECH).
Main Methods:
- Utilized RasV12-transformed NIH3T3 cells and HRAS transgenic mice.
- Investigated the role of p90 ribosomal S6 kinases (RSK) and HIF-1α.
- Employed RSK inhibitors and MEK inhibitors.
- Assessed PpIX accumulation, ABCB1 expression, and FECH activity.
- Validated findings in human cancer cell lines.
Main Results:
- Ras/MEK activation decreased PpIX accumulation.
- Knockdown of RSK isoforms (2, 3, 4) or RSK inhibition increased PpIX accumulation and reduced ABCB1 expression.
- MEK inhibition reduced HIF-1α expression.
- HIF-1α inhibition decreased FECH activity and increased PpIX accumulation.
- RSKs and HIF-1α were confirmed to regulate PpIX accumulation in human cancer cells.
Conclusions:
- The RSK-ABCB1 and HIF-1α-FECH axes are identified as key downstream pathways of Ras/MEK signaling.
- These pathways are critical for regulating PpIX accumulation, impacting 5-ALA-PDD and 5-ALA-PDT efficacy.
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