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April 24, 2026Trends in Pharmacological Sciences0 citationsOpen Access

Pharmacological strategies targeting chaperone-mediated autophagy

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EBEva BerengerAMAlice MaestriDVDaniel R. Vaz

Key Points

  • The aim is to explore pharmacological strategies for targeting chaperone-mediated autophagy to clarify its regulatory mechanisms.
  • Synthesizing recent advances in mapping CMA regulatory checkpoints.
  • Introducing a mechanistic classification of CMA-modulating compounds based on action levels.
  • Reviewing in vivo validation studies of CMA-biased compounds.
  • Identified discrete control nodes in CMA that allow for pharmacological targeting.
  • Classified CMA-modulating compounds into physiological inducers, permissive potentiators, and proximal activators.
  • Clarified the pathway selectivity of compounds to aid in drug discovery.

Abstract

Chaperone-mediated autophagy (CMA) is a selective lysosomal protein degradation pathway that regulates proteostasis, metabolism, and stress adaptation. Genetic- and disease-model studies show that altered CMA activity contributes to diverse human disorders, including neurodegenerative, metabolic, inflammatory, and malignant diseases. However, pharmacological targeting has remained challenging due to a limited understanding of its regulatory architecture and a lack of criteria to distinguish pathway-selective from indirect modulation. Recent advances in mapping CMA regulatory checkpoints and the in vivo validation of CMA-biased compounds have revealed discrete, mechanistically defined control nodes that render CMA pharmacologically tractable. In this review, we synthesize these advances and introduce a mechanistic classification of CMA-modulating compounds by level of action, distinguishing physiological inducers, permissive potentiators, and proximal activators to clarify pathway selectivity and guide translational drug discovery.

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Cite This Study

Berenger et al. (2026) studied this question.

synapsesocial.com/papers/69eb07a4553a5433e34b3274https://doi.org/10.1016/j.tips.2026.03.008
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