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Updated: Jul 13, 2026

Lighting Up the Pathways to Caspase Activation Using Bimolecular Fluorescence Complementation
Published on: March 5, 2018
Caspase-dependent cleavage disrupts the ERK cascade scaffolding function of KSR1
Melissa M McKay1, Deborah K Morrison
1Laboratory of Cell and Developmental Signaling, Center for Cancer Research, NCI-Frederick, National Institutes of Health, Frederick, Maryland 21702, USA.
Abstract:
Kinase suppressor of Ras 1 (KSR1) is a protein scaffold that facilitates ERK cascade activation at the plasma membrane, a critical step in the signal transduction process that allows cells to respond to survival, proliferative, and differentiative cues. Here, we report that KSR1 undergoes caspase-dependent cleavage in apoptotic cells and that cleavage destroys the scaffolding function of the full-length KSR1 protein and generates a stable C-terminal fragment that can inhibit ERK activation. KSR1 is cleaved in response to multiple apoptotic stimuli and occurs in vivo during the involution of mouse mammary tissues, a morphogenic process requiring cellular apoptosis. In addition, we find that in comparison with KSR1(-/-) mouse embryonic fibroblasts expressing wild type KSR1 (WT-KSR1), cells expressing a cleavage-resistant KSR1 protein (DEVA-KSR1) exhibit reduced apoptotic signaling in response to tumor necrosis factor-alpha/cycloheximide treatment. The effect of DEVA-KSR1 expression was found to correlate with increased levels of active phosphoERK and could be significantly reversed by treating cells with the MEK inhibitor U0126. In contrast, reduced phosphoERK levels and enhanced apoptotic signaling were observed in cells constitutively expressing the C-terminal KSR1 fragment (CTF-KSR1). Moreover, we find that cleavage of WT-KSR1 correlates with a dramatic reduction in active phosphoERK levels. These findings identify KSR1 as a caspase target and suggest that cleavage of the KSR1 scaffold represents another mechanism whereby caspases down-regulate ERK survival signaling to promote cellular apoptosis.
Insights
Kinase suppressor of Ras 1 (KSR1) is cleaved by caspases during apoptosis, inhibiting ERK signaling. This cleavage promotes cellular apoptosis by reducing survival cues.
Area of Science:
- Cellular signaling
- Apoptosis
- Signal transduction
Background:
- Kinase suppressor of Ras 1 (KSR1) is a protein scaffold crucial for ERK cascade activation.
- ERK signaling pathways regulate cell survival, proliferation, and differentiation.
Purpose of the Study:
- To investigate the role of KSR1 cleavage by caspases during apoptosis.
- To determine the impact of KSR1 cleavage on ERK signaling and apoptotic processes.
Main Methods:
- Analysis of KSR1 cleavage in apoptotic cells and in vivo during mouse mammary gland involution.
- Expression of wild-type (WT-KSR1), cleavage-resistant (DEVA-KSR1), and C-terminal fragment (CTF-KSR1) KSR1 proteins in mouse embryonic fibroblasts.
- Assessment of apoptotic signaling and ERK phosphorylation levels.
Main Results:
- KSR1 undergoes caspase-dependent cleavage during apoptosis, generating a C-terminal fragment that inhibits ERK activation.
- Cleavage-resistant KSR1 (DEVA-KSR1) reduces apoptotic signaling and increases phospho-ERK levels.
- Constitutive expression of the KSR1 C-terminal fragment (CTF-KSR1) enhances apoptosis and reduces phospho-ERK levels.
Conclusions:
- KSR1 is a caspase target, and its cleavage is a novel mechanism for caspases to down-regulate ERK survival signaling.
- KSR1 cleavage promotes cellular apoptosis by disrupting scaffolding function and inhibiting ERK pathway.
- This finding provides new insights into the regulation of apoptosis and cell survival pathways.
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