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Updated: Jun 20, 2026

Cell-Based Drug Screening for Inhibitors of Autophagy Related 4B Cysteine Peptidase
Published on: June 30, 2023
Targeting autophagy: a novel anticancer strategy with therapeutic implications for imatinib resistance
Jennifer S Carew1, Steffan T Nawrocki, Francis J Giles
1The CTRC Institute for Drug Development, University of Texas Health Science Center San Antonio, San Antonio, TX, USA.
Abstract:
Autophagy is an ancient, intracellular degradative system which plays important roles in regulating protein homeostasis and which is essential for survival when cells are faced with metabolic stress. Increasing evidence suggests that autophagy also functions as a tumor suppressor mechanism that harnesses the growth and/or survival of cells as they transition towards a rapidly dividing malignant state. However, the impact of autophagy on cancer progression and on the efficacy of cancer therapeutics is controversial. In particular, although the induction of autophagy has been reported after treatment with a number of therapeutic agents, including imatinib, this response has variously been suggested to either impair or contribute to the effects of anticancer agents. More recent studies support the notion that autophagy compromises the efficacy of anticancer agents, where agents such as chloroquine (CQ) that impair autophagy augment the anticancer activity of histone deacetylase (HDAC) inhibitors and alkylating agents. Inhibition of autophagy is a particularly attractive strategy for the treatment of imatinib-refractory chronic myelogenous leukemia (CML) since a combination of CQ with the HDAC inhibitor suberoylanilide hydroxamic acid (SAHA) compromises the survival of even BCR-ABL-T315I+ imatinib-resistant CML. Additional studies are clearly needed to establish the clinical utility of autophagy inhibitors and to identify patients most likely to benefit from this novel therapeutic approach.
Insights
Autophagy, a cellular process, impacts cancer treatment. Inhibiting autophagy enhances anticancer drug efficacy, offering a promising strategy for drug-resistant leukemia.
Area of Science:
- Cellular Biology
- Oncology
- Molecular Medicine
Background:
- Autophagy is a key cellular process for protein homeostasis and survival under stress.
- Autophagy's role in cancer is complex, potentially acting as a tumor suppressor.
- Its impact on cancer progression and therapy response remains debated.
Purpose of the Study:
- To investigate the role of autophagy in cancer progression.
- To evaluate the effect of autophagy modulation on anticancer therapeutic efficacy.
- To explore autophagy inhibition as a strategy for imatinib-resistant chronic myelogenous leukemia (CML).
Main Methods:
- Review of existing evidence on autophagy's role in cancer.
- Analysis of studies combining autophagy inhibitors (e.g., chloroquine) with anticancer agents (e.g., HDAC inhibitors).
- Focus on imatinib-resistant CML models, including BCR-ABL-T315I+ mutations.
Main Results:
- Autophagy induction can be a response to certain cancer therapies.
- Evidence suggests autophagy can impair anticancer agent efficacy.
- Inhibiting autophagy, using agents like chloroquine, augments the activity of HDAC inhibitors and alkylating agents.
- Combining chloroquine with SAHA shows promise against imatinib-resistant CML.
Conclusions:
- Autophagy inhibition is a potential therapeutic strategy, particularly for imatinib-refractory CML.
- Combining autophagy inhibitors with existing therapies may overcome drug resistance.
- Further clinical studies are needed to validate autophagy inhibitors and identify responsive patient populations.
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