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Pooled shRNA Library Screening to Identify Factors that Modulate a Drug Resistance Phenotype
Published on: June 17, 2022
An unexpected protein interaction promotes drug resistance in leukemia
Aaron Pitre1, Yubin Ge2, Wenwei Lin3
1Department of Pharmaceutical Sciences, St. Jude Children's Research Hospital (SJCRH), Memphis, TN, 38105, USA.
Abstract:
The overall survival of patients with acute myeloid leukemia (AML) is poor and identification of new disease-related therapeutic targets remains a major goal for this disease. Here we show that expression of MPP1, a PDZ-domain-containing protein, highly correlated with ABCC4 in AML, is associated with worse overall survival in AML. Murine hematopoietic progenitor cells overexpressing MPP1 acquired the ability to serially replate in methylcellulose culture, a property crucially dependent upon ABCC4. The highly conserved PDZ-binding motif of ABCC4 is required for ABCC4 and MPP1 to form a protein complex, which increased ABCC4 membrane localization and retention, to enhance drug resistance. Specific disruption of this protein complex, either genetically or chemically, removed ABCC4 from the plasma membrane, increased drug sensitivity, and abrogated MPP1-dependent hematopoietic progenitor cell replating in methylcellulose. High-throughput screening identified Antimycin A as a small molecule that disrupted the ABCC4-MPP1 protein complex and reversed drug resistance in AML cell lines and in primary patient AML cells. In all, targeting the ABCC4-MPP1 protein complex can lead to new therapies to improve treatment outcome of AML, a disease where the long-term prognosis is poor.
Insights
New research reveals that the MPP1 protein complex with ABCC4 worsens acute myeloid leukemia (AML) survival. Disrupting this complex with Antimycin A may offer new AML treatment strategies.
Area of Science:
- Hematology
- Molecular Biology
- Cancer Research
Background:
- Acute myeloid leukemia (AML) has a poor prognosis, necessitating novel therapeutic targets.
- MPP1 expression correlates with ABCC4 and predicts worse overall survival in AML patients.
Purpose of the Study:
- To investigate the functional relationship between MPP1 and ABCC4 in AML.
- To identify therapeutic strategies targeting the MPP1-ABCC4 interaction to overcome drug resistance.
Main Methods:
- Overexpression of MPP1 in murine hematopoietic progenitor cells.
- Analysis of protein complex formation using PDZ-binding motif disruption.
- High-throughput screening for small molecules disrupting the MPP1-ABCC4 complex.
Main Results:
- MPP1 overexpression confers serial replating ability in hematopoietic progenitor cells, dependent on ABCC4.
- The MPP1-ABCC4 complex enhances ABCC4 membrane localization and drug resistance.
- Disrupting the complex sensitizes AML cells to drugs and abrogates MPP1-driven progenitor cell replating.
- Antimycin A identified as a disruptor of the MPP1-ABCC4 complex, reversing drug resistance.
Conclusions:
- The MPP1-ABCC4 protein complex is a key driver of drug resistance and poor prognosis in AML.
- Targeting the MPP1-ABCC4 complex presents a promising therapeutic strategy for AML treatment.
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