Targeting the endoplasmic reticulum-mitochondria interface sensitizes leukemia cells to cytostatics

Fabian Koczian1, Olga Nagło1, Jan Vomacka2

  • 1Department of Pharmaceutical Biology, Ludwig Maximilian University of Munich.

Haematologica
|October 13, 2018
PubMed

Insights

The protein disulfide isomerase inhibitor PS89 enhances chemotherapy effectiveness in acute leukemia by targeting endoplasmic reticulum proteins. This combination therapy promotes apoptosis via B-cell receptor-associated protein 31, offering a new strategy for leukemia treatment.

Area of Science:

  • Oncology
  • Molecular Biology
  • Biochemistry

Background:

  • Combination chemotherapy is effective for acute leukemia.
  • Novel drug development is limited by understanding drug interactions.
  • Protein disulfide isomerase (PDI) inhibitors are emerging therapeutic agents.

Purpose of the Study:

  • To investigate the efficacy of combining the PDI inhibitor PS89 with cytostatics in acute leukemia.
  • To elucidate the molecular mechanisms underlying the synergistic effects of PS89 and cytostatics.
  • To identify PS89's molecular targets in leukemic cells.

Main Methods:

  • Proteomics-based target fishing to identify PS89 targets.
  • Cell line and patient-derived xenograft models of acute leukemia.
  • Apoptosis assays and Western blotting to analyze cell death pathways.

Main Results:

  • PS89 significantly increased the response of acute leukemia cells, including drug-resistant and xenograft models, when combined with cytostatics.
  • PS89 targets a network of endoplasmic reticulum homeostasis proteins.
  • The PS89 target B-cell receptor-associated protein 31 orchestrates apoptosis induction at the ER-mitochondria interface.

Conclusions:

  • PS89 acts as a novel chemosensitizing agent for acute leukemia treatment.
  • Targeting the endoplasmic reticulum-mitochondrial network is a promising strategy for combination therapy in leukemia.
  • The PS89-mediated apoptosis pathway involves caspase-8 activation, calcium release, and reactive oxygen species generation.

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