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Published on: November 1, 2021
EphrinB1 interacts with CNK1 and promotes cell migration through c-Jun N-terminal kinase (JNK) activation
Hee Jun Cho1, Yoo-Seok Hwang1, Kathleen Mood1
1From the Laboratory of Cell and Developmental Signaling, National Cancer Institute-Frederick, National Institutes of Health, Frederick, Maryland 21702.
Abstract:
The Eph receptors and their membrane-bound ligands, ephrins, play important roles in various biological processes such as cell adhesion and movement. The transmembrane ephrinBs transduce reverse signaling in a tyrosine phosphorylation-dependent or -independent, as well as PDZ-dependent manner. Here, we show that ephrinB1 interacts with Connector Enhancer of KSR1 (CNK1) in an EphB receptor-independent manner. In cultured cells, cotransfection of ephrinB1 with CNK1 increases JNK phosphorylation. EphrinB1/CNK1-mediated JNK activation is reduced by overexpression of dominant-negative RhoA. Overexpression of CNK1 alone is sufficient for activation of RhoA; however, both ephrinB1 and CNK1 are required for JNK phosphorylation. Co-immunoprecipitation data showed that ephrinB1 and CNK1 act as scaffold proteins that connect RhoA and JNK signaling components, such as p115RhoGEF and MKK4. Furthermore, adhesion to fibronectin or active Src overexpression increases ephrinB1/CNK1 binding, whereas blocking Src activity by a pharmacological inhibitor decreases not only ephrinB1/CNK1 binding, but also JNK activation. EphrinB1 overexpression increases cell motility, however, CNK1 depletion by siRNA abrogates ephrinB1-mediated cell migration and JNK activation. Moreover, Rho kinase inhibitor or JNK inhibitor treatment suppresses ephrinB1-mediated cell migration. Taken together, our findings suggest that CNK1 is required for ephrinB1-induced JNK activation and cell migration.
Insights
Connector Enhancer of KSR1 (CNK1) acts as a scaffold protein, linking RhoA and JNK signaling pathways. This interaction is crucial for ephrinB1-induced JNK activation and cell migration, highlighting CNK1
Area of Science:
- Cell Biology
- Molecular Signaling
- Biochemistry
Background:
- Eph receptors and ephrins are key regulators of cell adhesion and migration.
- Transmembrane ephrinB proteins mediate reverse signaling through various pathways.
- The role of Connector Enhancer of KSR1 (CNK1) in ephrin signaling remains largely unexplored.
Purpose of the Study:
- To investigate the interaction between ephrinB1 and CNK1.
- To elucidate the role of CNK1 in ephrinB1-mediated signaling pathways.
- To determine the involvement of CNK1 in cell migration.
Main Methods:
- Co-immunoprecipitation assays to assess protein interactions.
- Cell culture experiments involving cotransfection and overexpression.
- Western blotting to detect protein phosphorylation (JNK, RhoA).
- RNA interference (siRNA) to deplete CNK1.
- Pharmacological inhibition of Rho kinase and JNK.
Main Results:
- EphrinB1 interacts with CNK1 independently of EphB receptors.
- Cotransfection of ephrinB1 and CNK1 enhances JNK phosphorylation.
- CNK1 and ephrinB1 function as scaffolds connecting RhoA and JNK signaling components.
- CNK1 depletion abrogates ephrinB1-induced JNK activation and cell migration.
- Src activity modulates ephrinB1/CNK1 binding and JNK activation.
Conclusions:
- CNK1 is essential for ephrinB1-mediated JNK activation.
- CNK1 plays a critical role in ephrinB1-induced cell migration.
- The ephrinB1/CNK1 complex acts as a signaling hub for RhoA and JNK pathways.
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