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Hypericin, a potential new BH3 mimetic
Anastasia Doroshenko1, Silvia Tomkova1, Tibor Kozar2
1Department of Biophysics, Faculty of Natural Sciences, PJ Safarik University, Kosice, Slovakia.
Abstract:
Many types of cancer such as prostate cancer, myeloid leukemia, breast cancer, glioblastoma display strong chemo resistance, which is supported by enhanced expression of multiple anti-apoptotic Bcl-2, Bcl-XL and Mcl-1 proteins. The viable anti-cancer strategies are based on developing anti-apoptotic Bcl-2 proteins inhibitors, BH3 mimetics. Our focus in past years has been on the investigating a new potential BH3 mimetic, Hypericin (Hyp). Hyp is a naturally occurring photosensitive compound used in photodynamic therapy and diagnosis. We have demonstrated that Hyp can cause substantial effects in cellular ultrastructure, mitochondria function and metabolism, and distribution of Bcl2 proteins in malignant and non-malignant cells. One of the possible mechanisms of Hyp action could be the direct interactions between Bcl-2 proteins and Hyp. We investigated this assumption by in silico computer modelling and in vitro fluorescent spectroscopy experiments with the small Bcl2 peptide segments designed to correspond to Bcl2 BH3 and BH1 domains. We show here that Hyp interacts with BH3 and BH1 peptides in concentration dependent manner, and shows the stronger interactions than known BH3 mimetics, Gossypol (Goss) and ABT-263. In addition, interactions of Hyp, Goss and ABT263, with whole purified proteins Bcl-2 and Mcl-1 by fluorescence spectroscopy show that Hyp interacts stronger with the Bcl-2 and less with Mcl-1 protein than Goss or ABT-263. This suggest that Hyp is comparable to other BH3 mimetics and could be explore as such. Hyp cytotoxicity was low in human U87 MG glioma, similar to that of ABT263, where Goss exerted sufficient cytotoxicity, suggesting that Hyp acts primarily on Bcl-2, but not on Mcl-1 protein. In combination therapy, low doses of Hyp with Goss effectively decreased U87 MG viability, suggesting a possible synergy effect. Overall, we can conclude that Hyp as BH3 mimetic acts primarily on Bcl-2 protein and can be explored to target cells with Bcl-2 over-expression, or in combination with other BH3 mimetics, that target Mcl-1 or Bcl-XL proteins, in dual therapy.
Insights
Hypericin (Hyp) shows potential as a BH3 mimetic by directly interacting with Bcl-2 proteins, offering a new strategy against chemo-resistant cancers. It may be effective in combination therapies targeting multiple anti-apoptotic proteins.
Area of Science:
- Biochemistry and Molecular Biology
- Cancer Research
- Pharmacology
Background:
- Chemoresistance in cancers like prostate, breast, and glioblastoma is often linked to elevated anti-apoptotic Bcl-2 family proteins.
- Developing inhibitors of these proteins, known as BH3 mimetics, is a key anti-cancer strategy.
Purpose of the Study:
- To investigate the potential of Hypericin (Hyp), a natural photosensitive compound, as a novel BH3 mimetic.
- To elucidate the mechanism of Hyp action, focusing on its direct interactions with Bcl-2 family proteins.
Main Methods:
- In silico computer modeling to predict interactions.
- In vitro fluorescent spectroscopy experiments using Bcl-2 peptide segments (BH3 and BH1 domains).
- Fluorescence spectroscopy with purified Bcl-2 and Mcl-1 proteins, comparing Hyp with known BH3 mimetics (Gossypol and ABT-263).
- Assessment of Hyp cytotoxicity in U87 MG glioma cells and its effects in combination therapy.
Main Results:
- Hypericin (Hyp) demonstrated concentration-dependent interactions with Bcl-2 BH3 and BH1 peptides, exceeding those of Gossypol (Goss) and ABT-263.
- Hyp showed stronger binding to Bcl-2 and weaker binding to Mcl-1 compared to Goss or ABT-263.
- Hyp exhibited low cytotoxicity in U87 MG glioma cells, similar to ABT-263, suggesting primary action on Bcl-2.
- Combination therapy with low doses of Hyp and Goss significantly reduced U87 MG cell viability, indicating a potential synergistic effect.
Conclusions:
- Hypericin (Hyp) functions as a BH3 mimetic, primarily targeting the Bcl-2 protein.
- Hyp is a promising candidate for treating Bcl-2 over-expressing cancers.
- Dual therapy strategies combining Hyp with other BH3 mimetics targeting Mcl-1 or Bcl-XL could enhance anti-cancer efficacy.

