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Axin utilizes distinct regions for competitive MEKK1 and MEKK4 binding and JNK activation
Wen Luo1, Wilson W Ng, Li-Hua Jin
1Department of Biology, Xiamen University, Xiamen, Fujian 361005, China.
Abstract:
Axin is a multidomain protein that plays a critical role in Wnt signaling, serving as a scaffold for down-regulation of beta-catenin. It also activates the JNK mitogen-activated protein kinase by binding to MEKK1. However, it is intriguing that Axin requires several additional elements for JNK activation, including a requirement for homodimerization, sumoylation at the extreme C-terminal sites, and a region in the protein phosphatase 2A-binding domain. In our present study, we have shown that another MEKK family member, MEKK4, also binds to Axin in vivo and mediates Axin-induced JNK activation. Surprisingly MEKK4 binds to a region distinct from the MEKK1-binding site. Dominant negative mutant of MEKK4 attenuates the JNK activation by Axin. Activation of JNK by Axin in MEKK1-/- mouse embryonic fibroblast cells supports the idea that another MEKK can mediate Axin-induced JNK activation. Expression of specific small interfering RNA against MEKK4 effectively attenuates JNK activation by the MEKK1 binding-defective Axin mutant in 293T cells and inhibits JNK activation by wild-type Axin in MEKK1-/- cells, confirming that MEKK4 is indeed another mitogen-activated protein kinase kinase kinase that is specifically involved in Axin-mediated JNK activation independently of MEKK1. We have also identified an additional domain between MEKK1- and MEKK4-binding sites as being required for JNK activation by Axin. MEKK1 and MEKK4 compete for Axin binding even though they bind to sites far apart, suggesting that Axin may selectively bind to MEKK1 or MEKK4 depending on distinct signals or cellular context. Our findings will provide new insights into how scaffold proteins mediate ultimate activation of different mitogen-activated protein kinase kinase kinases.
Insights
Axin protein activates JNK signaling through MEKK4, independent of MEKK1. This discovery reveals a new pathway for scaffold proteins in kinase activation and cellular signaling.
Area of Science:
- Cellular signaling pathways
- Protein-protein interactions
- Kinase activation mechanisms
Background:
- Axin is a key scaffold protein in Wnt signaling, regulating beta-catenin.
- Axin activates JNK mitogen-activated protein kinase (MAPK) via MEKK1, requiring specific protein domains and modifications.
- The precise mechanisms of Axin-mediated JNK activation beyond MEKK1 remain incompletely understood.
Purpose of the Study:
- To investigate alternative MEKK family members involved in Axin-induced JNK activation.
- To elucidate the role of MEKK4 in Axin-mediated JNK signaling.
- To identify novel binding sites and regulatory mechanisms in Axin's scaffold function.
Main Methods:
- In vivo binding assays to detect Axin-MEKK4 interactions.
- Use of dominant-negative MEKK4 mutants and MEKK1-deficient cells to assess JNK activation.
- Small interfering RNA (siRNA) knockdown of MEKK4 to confirm its specific role.
- Mapping of MEKK1 and MEKK4 binding sites on Axin.
Main Results:
- MEKK4 binds to Axin in vivo at a distinct site from MEKK1.
- MEKK4 mediates Axin-induced JNK activation, confirmed by dominant-negative mutants and siRNA knockdown.
- Axin activates JNK via MEKK4 independently of MEKK1, even in MEKK1-deficient cells.
- A novel domain between MEKK1 and MEKK4 binding sites is required for JNK activation.
- MEKK1 and MEKK4 compete for Axin binding, suggesting context-dependent selectivity.
Conclusions:
- MEKK4 is identified as a novel mediator of Axin-induced JNK activation, functioning independently of MEKK1.
- Axin utilizes distinct binding sites and potentially competes between MEKK1 and MEKK4 for selective kinase activation.
- These findings expand our understanding of scaffold protein-mediated MAPK signaling pathways.