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Updated: Feb 4, 2026

Study of Endoplasmic Reticulum and Mitochondria Interactions by In Situ Proximity Ligation Assay in Fixed Cells
Published on: December 10, 2016
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.
Abstract:
Combination chemotherapy has proven to be a favorable strategy to treat acute leukemia. However, the introduction of novel compounds remains challenging and is hindered by a lack of understanding of their mechanistic interactions with established drugs. In the present study, we demonstrate a highly increased response of various acute leukemia cell lines, drug-resistant cells and patient-derived xenograft cells by combining the recently introduced protein disulfide isomerase inhibitor PS89 with cytostatics. In leukemic cells, a proteomics-based target fishing approach revealed that PS89 affects a whole network of endoplasmic reticulum homeostasis proteins. We elucidate that the strong induction of apoptosis in combination with cytostatics is orchestrated by the PS89 target B-cell receptor-associated protein 31, which transduces apoptosis signals at the endoplasmic reticulum -mitochondria interface. Activation of caspase-8 and cleavage of B-cell receptor-associated protein 31 stimulate a pro-apoptotic crosstalk including release of calcium from the endoplasmic reticulum and an increase in the levels of reactive oxygen species resulting in amplification of mitochondrial apoptosis. The findings of this study promote PS89 as a novel chemosensitizing agent for the treatment of acute leukemia and uncovers that targeting the endoplasmic reticulum - mitochondrial network of cell death is a promising approach in combination therapy.
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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