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Functionalized Spirocyclic Heterocycle Synthesis and Cytotoxicity Assay
Published on: February 9, 2021
Hydroxyquinoline-derived compounds and analoguing of selective Mcl-1 inhibitors using a functional biomarker
David J Richard1, Ryan Lena, Thomas Bannister
1Eutropics Pharmaceuticals, 767C Concord Avenue, Cambridge, MA 02138, United States.
Abstract:
Anti-apoptotic Bcl-2 family proteins are important oncology therapeutic targets. To date, BH3 mimetics that abrogate anti-apoptotic activity have largely been directed at Bcl-2 and/or Bcl-xL. One observed mechanism of resistance to these inhibitors is increased Mcl-1 levels in cells exposed to such therapeutics. For this reason, and because Mcl-1 is important in the onset of lymphoid, myeloid, and other cancers, it has become a target of great interest. However, small molecule inhibitors displaying potency and selectivity for Mcl-1 are lacking. Identifying such compounds has been challenging due to difficulties in translating the target selectivity observed at the biochemical level to the cellular level. Herein we report the results of an HTS strategy coupled with directed hit optimization. Compounds identified have selective Mcl-1 inhibitory activity with greater than 100-fold reduced affinity for Bcl-xL. The selectivity of these compounds at the cellular level was validated using BH3 profiling, a novel personalized diagnostic approach. This assay provides an important functional biomarker that allows for the characterization of cells based upon their dependencies on various anti-apoptotic Bcl-2 proteins. We demonstrate that cells dependent on Mcl-1 or Bcl-2/Bcl-xL for survival are commensurately responsive to compounds that genuinely target those proteins. The identification of compound 9 with uniquely validated and selective Mcl-1 inhibitory activity provides a valuable tool to those studying the intrinsic apoptosis pathway and highlights an important approach in the development of a first-in-class cancer therapeutic.
Insights
Researchers developed selective Mcl-1 inhibitors, crucial for targeting cancers resistant to current therapies. BH3 profiling validated these compounds, offering a new tool for cancer research and therapeutic development.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Anti-apoptotic Bcl-2 proteins are key targets in oncology.
- Resistance to existing BH3 mimetics often involves increased Mcl-1.
- Mcl-1 is implicated in various cancers, making it a high-interest therapeutic target.
Purpose of the Study:
- To identify potent and selective small molecule inhibitors of Mcl-1.
- To overcome challenges in translating biochemical selectivity to cellular efficacy.
- To develop novel tools for studying the intrinsic apoptosis pathway and cancer therapeutics.
Main Methods:
- High-throughput screening (HTS) strategy coupled with hit optimization.
- Biochemical assays to assess Mcl-1 inhibitory activity and selectivity against Bcl-xL.
- BH3 profiling to validate cellular selectivity and functional biomarker development.
Main Results:
- Identified compounds with selective Mcl-1 inhibitory activity.
- Compounds showed >100-fold reduced affinity for Bcl-xL.
- BH3 profiling confirmed cellular selectivity and responsiveness based on protein dependency.
Conclusions:
- Compound 9 demonstrates validated, selective Mcl-1 inhibition.
- BH3 profiling serves as a functional biomarker for personalized diagnostics.
- This approach advances the development of first-in-class Mcl-1-targeting cancer therapeutics.

