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Updated: Sep 28, 2025

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Published on: April 27, 2021
Mechanical stress shapes the cancer cell response to neddylation inhibition
Frédérique Mittler1, Patricia Obeïd1, Vincent Haguet1
1University Grenoble Alpes, CEA, INSERM, IRIG, Biomics, 38054, Grenoble, France.
Background:
The inhibition of neddylation by the preclinical drug MLN4924 represents a new strategy to combat cancer. However, despite being effective against hematologic malignancies, its success in solid tumors, where cell-cell and cell-ECM interactions play essential roles, remains elusive.
Methods:
Here, we studied the effects of MLN4924 on cell growth, migration and invasion in cultured prostate cancer cells and in disease-relevant prostate tumoroids. Using focused protein profiling, drug and RNAi screening, we analyzed cellular pathways activated by neddylation inhibition.
Results:
We show that mechanical stress induced by MLN4924 in prostate cancer cells significantly affects the therapeutic outcome. The latter depends on the cell type and involves distinct Rho isoforms. In LNCaP and VCaP cells, the stimulation of RhoA and RhoB by MLN4924 markedly upregulates the level of tight junction proteins at cell-cell contacts, which augments the mechanical strain induced by Rho signaling. This "tight junction stress response" (TJSR) causes the collapse of cell monolayers and a characteristic rupture of cancer spheroids. Notably, TJSR is a major cause of drug-induced apoptosis in these cells. On the other hand, in PC3 cells that underwent partial epithelial-to-mesenchymal transition (EMT), the stimulation of RhoC induces an adverse effect by promoting amoeboid cell scattering and invasion. We identified complementary targets and drugs that allow for the induction of TJSR without stimulating RhoC.
Conclusions:
Our finding that MLN4924 acts as a mechanotherapeutic opens new ways to improve the efficacy of neddylation inhibition as an anticancer approach.
Insights
MLN4924, a neddylation inhibitor, shows promise as a mechanotherapeutic by inducing a "tight junction stress response" (TJSR) in prostate cancer cells, leading to apoptosis. This approach offers new strategies to improve cancer treatment efficacy.
Area of Science:
- Oncology
- Cell Biology
- Biochemistry
Background:
- Neddylation inhibition via MLN4924 is a novel cancer therapy strategy.
- MLN4924 is effective in hematologic malignancies but limited in solid tumors due to cell-cell and cell-extracellular matrix interactions.
Purpose of the Study:
- To investigate the effects of MLN4924 on prostate cancer cell growth, migration, and invasion.
- To analyze cellular pathways activated by neddylation inhibition in prostate cancer models.
Main Methods:
- Cultured prostate cancer cells and tumoroids were used to study MLN4924 effects.
- Focused protein profiling, drug screening, and RNA interference were employed.
- Cellular pathways activated by neddylation inhibition were analyzed.
Main Results:
- MLN4924 induces mechanical stress in prostate cancer cells, impacting therapeutic outcomes.
- In LNCaP and VCaP cells, MLN4924 upregulates tight junction proteins, causing a "tight junction stress response" (TJSR) and apoptosis.
- In PC3 cells, MLN4924 promotes invasion via RhoC stimulation; complementary targets were identified to induce TJSR without RhoC activation.
Conclusions:
- MLN4924 functions as a mechanotherapeutic agent.
- This study opens new avenues for enhancing neddylation inhibition efficacy in cancer treatment.
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