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Author Spotlight: Establishing a Murine Non-Small Cell Lung Cancer Model for Developing Nanoformulations of Anticancer Drugs
Published on: May 10, 2024
PRMT5 inhibitors actively promote metastatic progression of lung adenocarcinoma
Colin E Fowler1,2, Natalie A O'Hearn1, Nicole Henning1
1The David H. Koch Institute for Integrative Cancer Research, Massachusetts Institute of Technology, Cambridge, MA, USA.
Abstract:
Epigenetic changes are a major driver of cancer progression, placing considerable focus on epigenetic regulators as therapeutic targets. Protein arginine methyltransferase 5 (PRMT5) is one such regulator, and numerous PRMT5 inhibitors (PRMT5i) in clinical trials. Despite this, the mechanisms and consequences of PRMT5i-resistance are unknown. Here, we demonstrate that aggressive cancer progression is an inbuilt feature of PRMT5i-resistance acquisition in lung adenocarcinoma (LUAD). Independently-generated resistant cell lines gain dedifferentiation signatures that typify late-stage disease and show increased metastatic potential in vivo. We establish that these state shifts are a direct consequence of PRMT5i action; treatment induces rapid and widespread chromatin rewiring, enabling derepression of late-stage disease states that are stably established in resistant cells. Notably, treatment of lung tumor-bearing mice drives rapid disease advancement without decreasing tumor burden, showing that drug-induced disease progression supersedes any benefits from PRMT5 inhibition in vivo. Furthermore, analyses of human cell lines and patient cohorts supports the notion of PRMT5 inhibition-mediated dedifferentiation. Collectively our data show that PRMT5i can actively promote self-resistance and disease progression in different tumor types. This raises serious concerns for the use of PRMT5i in patients, arguing that clinical studies should consider the possibility of drug-induced plasticity, resistance, and disease advancement.
Insights
Protein arginine methyltransferase 5 inhibitors (PRMT5i) can paradoxically accelerate aggressive cancer progression and resistance in lung adenocarcinoma. This drug-induced plasticity raises concerns for clinical applications.
Area of Science:
- Oncology
- Epigenetics
- Cancer Biology
Background:
- Epigenetic alterations are key drivers of cancer progression.
- Protein arginine methyltransferase 5 (PRMT5) is an epigenetic regulator targeted by inhibitors (PRMT5i) in clinical trials.
- Mechanisms of PRMT5 inhibitor resistance remain largely unknown.
Purpose of the Study:
- To investigate the mechanisms and consequences of PRMT5 inhibitor resistance in lung adenocarcinoma (LUAD).
- To determine if PRMT5 inhibition impacts cancer progression and resistance acquisition.
Main Methods:
- Generation of independent PRMT5 inhibitor-resistant LUAD cell lines.
- In vivo studies using lung tumor-bearing mice.
- Chromatin rewiring analysis.
- Analysis of human cell lines and patient cohorts.
Main Results:
- Acquisition of PRMT5 inhibitor resistance leads to aggressive cancer progression and dedifferentiation signatures.
- Resistant cells exhibit increased metastatic potential in vivo.
- PRMT5 inhibition induces rapid chromatin rewiring, enabling derepression of late-stage disease states.
- In vivo, PRMT5 inhibition promotes rapid disease advancement without reducing tumor burden.
- Data from human cell lines and patient cohorts support PRMT5 inhibition-mediated dedifferentiation.
Conclusions:
- PRMT5 inhibitors can actively promote self-resistance and disease progression in various tumor types.
- Drug-induced plasticity, resistance, and disease advancement should be considered in clinical studies involving PRMT5 inhibitors.
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