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Published on: October 5, 2020
The proto-oncogene c-Src and its downstream signaling pathways are inhibited by the metastasis suppressor, NDRG1
Wensheng Liu1,2, Fei Yue1, Minhua Zheng1
1Department of General Surgery, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200025, P.R.China.
Abstract:
N-myc downstream regulated gene-1 (NDRG1) is a potent metastasis suppressor that plays a key role in regulating signaling pathways involved in mediating cancer cell invasion and migration, including those derived from prostate, colon, etc. However, the mechanisms and molecular targets through which NDRG1 reduces cancer cell invasion and migration, leading to inhibition of cancer metastasis, are not fully elucidated. In this investigation, using NDRG1 over-expression models in three tumor cell-types (namely, DU145, PC3MM and HT29) and also NDRG1 silencing in DU145 and HT29 cells, we reveal that NDRG1 decreases phosphorylation of a key proto-oncogene, cellular Src (c-Src), at a well-characterized activating site (Tyr416). NDRG1-mediated down-regulation of EGFR expression and activation were responsible for the decreased phosphorylation of c-Src (Tyr416). Indeed, NDRG1 prevented recruitment of c-Src to EGFR and c-Src activation. Moreover, NDRG1 suppressed Rac1 activity by modulating phosphorylation of a c-Src downstream effector, p130Cas, and its association with CrkII, which acts as a "molecular switch" to activate Rac1. NDRG1 also affected another signaling molecule involved in modulating Rac1 signaling, c-Abl, which then inhibited CrkII phosphorylation. Silencing NDRG1 increased cell migration relative to the control and inhibition of c-Src signaling using siRNA, or a pharmacological inhibitor (SU6656), prevented this increase. Hence, the role of NDRG1 in decreasing cell migration is, in part, due to its inhibition of c-Src activation. In addition, novel pharmacological agents, which induce NDRG1 expression and are currently under development as anti-metastatic agents, markedly increase NDRG1 and decrease c-Src activation. This study leads to important insights into the mechanism involved in inhibiting metastasis by NDRG1 and how to target these pathways with novel therapeutics.
Insights
N-myc downstream regulated gene-1 (NDRG1) suppresses cancer metastasis by inhibiting cellular Src (c-Src) activation. This discovery offers new therapeutic targets for anti-metastatic agents.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- N-myc downstream regulated gene-1 (NDRG1) is a known metastasis suppressor.
- The precise molecular mechanisms by which NDRG1 inhibits cancer cell invasion, migration, and metastasis are not fully understood.
Purpose of the Study:
- To elucidate the molecular targets and mechanisms through which NDRG1 suppresses cancer cell invasion and migration.
- To investigate the role of NDRG1 in regulating the cellular Src (c-Src) signaling pathway.
Main Methods:
- Utilized NDRG1 over-expression and silencing models in prostate (DU145, PC3MM) and colon (HT29) cancer cell lines.
- Assessed the phosphorylation status of c-Src and its downstream effectors.
- Investigated the interaction between NDRG1, EGFR, c-Src, p130Cas, CrkII, and c-Abl.
- Evaluated the effect of c-Src inhibition on cell migration.
Main Results:
- NDRG1 overexpression decreased c-Src phosphorylation at Tyr416, mediated by down-regulation of EGFR.
- NDRG1 inhibited Rac1 activity by modulating p130Cas phosphorylation and its association with CrkII.
- NDRG1 also affected c-Abl, inhibiting CrkII phosphorylation.
- Silencing NDRG1 increased cell migration, an effect reversed by c-Src inhibition.
- Pharmacological agents inducing NDRG1 expression decreased c-Src activation.
Conclusions:
- NDRG1 suppresses cancer cell migration and metastasis, in part, by inhibiting c-Src activation.
- NDRG1's mechanism involves regulating EGFR, p130Cas, CrkII, and c-Abl signaling.
- Targeting NDRG1 and c-Src pathways presents a promising therapeutic strategy for anti-metastatic agents.
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