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</script>Discovery of Marinopyrrole A (Maritoclax) as a Selective Mcl-1 Antagonist that Overcomes ABT-737 Resistance by Binding to and Targeting Mcl-1 for Proteasomal Degradation
Discovery of Marinopyrrole A (Maritoclax) as a Selective Mcl-1 Antagonist that Overcomes ABT-737 Resistance by Binding to and Targeting Mcl-1 for Proteasomal Degradation
The anti-apoptotic Bcl-2 family of proteins, including Bcl-2, Bcl-X(L) and Mcl-1, are well-validated drug targets for cancer treatment. Several small molecules have been designed to interfere with Bcl-2 and its fellow pro-survival family members. While ABT-737 and its orally active analog ABT-263 are the most potent and specific inhibitors to date that bind Bcl-2 and Bcl-X(L) with high affinity but have a much lower affinity for Mcl-1, they are not very effective as single agents in certain cancer types because of elevated levels of Mcl-1. Accordingly, compounds that specifically target Mcl-1 may overcome this resistance. In this study, we identified and characterized the natural product marinopyrrole A as a novel Mcl-1-specific inhibitor and named it maritoclax. We found that maritoclax binds to Mcl-1, but not Bcl-X(L), and is able to disrupt the interaction between Bim and Mcl-1. Moreover, maritoclax induces Mcl-1 degradation via the proteasome system, which is associated with the pro-apoptotic activity of maritoclax. Importantly, maritoclax selectively kills Mcl-1-dependent, but not Bcl-2- or Bcl-X(L)-dependent, leukemia cells and markedly enhances the efficacy of ABT-737 against hematologic malignancies, including K562, Raji, and multidrug-resistant HL60/VCR, by ∼60- to 2000-fold at 1-2 μM. Taken together, these results suggest that maritoclax represents a new class of Mcl-1 inhibitors, which antagonizes Mcl-1 and overcomes ABT-737 resistance by targeting Mcl-1 for degradation.
- Florida Southern College United States
- Pennsylvania State University United States
- Sichuan University China (People's Republic of)
- Penn State Cancer Institute United States
- Moffitt Cancer Center United States
Proteasome Endopeptidase Complex, Anticancer Drug, Drug Resistance, bcl-X Protein, 610, Apoptosis, HL-60 Cells, Marinopyrrole A, Microbiology, Piperazines, Nitrophenols, Cell and Developmental Biology, Jurkat Cells, Mice, Drug Discovery, Animals, Humans, Pyrroles, Molecular Biology, Sulfonamides, Leukemia, ABT-737, Biphenyl Compounds, Mcl-1, Life Sciences, Cell Biology, Proto-Oncogene Proteins c-bcl-2, Drug Resistance, Neoplasm, Proteolysis, Myeloid Cell Leukemia Sequence 1 Protein, Bcl-2 Family Proteins, K562 Cells, Maritoclax, Obatoclax
Proteasome Endopeptidase Complex, Anticancer Drug, Drug Resistance, bcl-X Protein, 610, Apoptosis, HL-60 Cells, Marinopyrrole A, Microbiology, Piperazines, Nitrophenols, Cell and Developmental Biology, Jurkat Cells, Mice, Drug Discovery, Animals, Humans, Pyrroles, Molecular Biology, Sulfonamides, Leukemia, ABT-737, Biphenyl Compounds, Mcl-1, Life Sciences, Cell Biology, Proto-Oncogene Proteins c-bcl-2, Drug Resistance, Neoplasm, Proteolysis, Myeloid Cell Leukemia Sequence 1 Protein, Bcl-2 Family Proteins, K562 Cells, Maritoclax, Obatoclax
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