Tumor-selective Mcl1 degradation by AUTAC uncouples antitumor efficacy from cardiotoxicity

Insights

Autophagy-targeting chimeras (AUTACs) degrade Mcl1, a protein driving cancer resistance, selectively in tumors. This approach spares the heart, offering a safer Mcl1-directed therapy for hematologic malignancies.

Area of Science:

  • Molecular Biology
  • Oncology
  • Pharmacology

Background:

  • Mcl1 is crucial for therapeutic resistance in hematologic malignancies.
  • Direct Mcl1 inhibition is limited by cardiotoxicity.

Purpose of the Study:

  • To evaluate the efficacy and safety of Mcl1-targeting autophagy-targeting chimeras (AUTACs).
  • To determine if AUTAC-mediated Mcl1 degradation offers a tumor-selective therapeutic window that spares cardiac tissue.

Main Methods:

  • Development of an Mcl1-targeting AUTAC.
  • Assessment of AUTAC-induced cytotoxicity and Mcl1 degradation in multiple myeloma models.
  • Evaluation of AUTAC toxicity in cardiac cell lines, primary cardiomyocytes, and murine heart tissue.
  • In vivo studies to assess tumor-selective Mcl1 reduction and cardiac Mcl1 levels.
  • Mechanistic studies investigating factors contributing to selectivity.

Main Results:

  • AUTAC induced potent cytotoxicity and Mcl1 degradation in multiple myeloma models.
  • AUTAC demonstrated minimal toxicity in cardiac cells and tissues.
  • In vivo, AUTAC reduced tumor Mcl1 without affecting cardiac Mcl1.
  • Selectivity was linked to lower expression of key AUTAC machinery and reduced intracellular accumulation in cardiac cells.
  • AUTAC enhanced the activity of carfilzomib and venetoclax without increasing cardiotoxicity.

Conclusions:

  • AUTAC-mediated Mcl1 degradation provides a cardiac-sparing strategy for targeting Mcl1.
  • Tumor-selective lysosomal degradation represents a safer therapeutic approach for Mcl1-directed therapy.
  • AUTAC offers a promising alternative to classical Mcl1 inhibitors with reduced cardiotoxicity.

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