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Updated: Jul 19, 2026

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Published on: October 5, 2020
The p38 pathway provides negative feedback for Ras proliferative signaling
1Cleveland Clinic Foundation, Department of Molecular Biology, Cleveland, Ohio 44195, USA. gchen1@Luc.edu
Abstract:
Ras activates three mitogen-activated protein kinases (MAPKs) including ERK, JNK, and p38. Whereas the essential roles of ERK and JNK in Ras signaling has been established, the contribution of p38 remains unclear. Here we demonstrate that the p38 pathway functions as a negative regulator of Ras proliferative signaling via a feedback mechanism. Oncogenic Ras activated p38 and two p38-activated protein kinases, MAPK-activated protein kinase 2 (MK2) and p38-related/activated protein kinase (PRAK). MK2 and PRAK in turn suppressed Ras-induced gene expression and cell proliferation, whereas two mutant PRAKs, unresponsive to Ras, had little effect. Moreover, the constitutive p38 activator MKK6 also suppressed Ras activity in a p38-dependent manner whereas arsenite, a potent chemical inducer of p38, inhibited proliferation only in a tumor cell line that required Ras activity. MEK was required for Ras stimulation of the p38 pathway. The p38 pathway inhibited Ras activity by blocking activation of JNK, without effect upon ERK, as evidenced by the fact that PRAK-mediated suppression of Ras-induced cell proliferation was reversed by coexpression of JNKK2 or JNK1. These studies thus establish a negative feedback mechanism by which Ras proliferative activity is regulated via signaling integrations of MAPK pathways.
Insights
Ras signaling activates multiple pathways, including p38 mitogen-activated protein kinases (MAPKs). This study reveals p38 acts as a negative regulator, suppressing Ras-driven proliferation through a feedback loop involving MK2 and PRAK.
Area of Science:
- Cellular signaling pathways
- Molecular biology
- Cancer research
Background:
- Ras signaling is crucial for cell proliferation and is frequently dysregulated in cancer.
- While ERK and JNK pathways are well-established in Ras signaling, the role of p38 MAPK remains less understood.
Purpose of the Study:
- To elucidate the contribution of the p38 MAPK pathway to Ras signaling.
- To investigate whether p38 acts as a positive or negative regulator of Ras-mediated proliferation.
Main Methods:
- Investigated Ras-induced activation of p38 and downstream kinases (MK2, PRAK).
- Utilized mutant PRAKs and MKK6 activators to assess p38 pathway function.
- Examined the impact of p38 activation on Ras-induced gene expression and cell proliferation.
- Assessed the role of MEK in Ras stimulation of the p38 pathway.
Main Results:
- Oncogenic Ras activated p38, MK2, and PRAK.
- Activated MK2 and PRAK suppressed Ras-induced gene expression and proliferation.
- Constitutive p38 activation by MKK6 suppressed Ras activity in a p38-dependent manner.
- The p38 pathway inhibited Ras activity by blocking JNK activation, not ERK.
Conclusions:
- The p38 MAPK pathway functions as a negative regulator of Ras proliferative signaling through a feedback mechanism.
- This pathway integrates MAPK signaling to control Ras activity, offering potential therapeutic targets.
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