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cIAP1/TRAF2 interplay promotes tumor growth through the activation of STAT3
Baptiste Dumétier1,2, Aymeric Zadoroznyj1,2, Jean Berthelet1,2,3
1Institut National de la Santé et de la Recherche Médicale (Inserm), LNC UMR1231, LabEx LIpSTIC, Team with the label of excellence from «la ligue national contre le Cancer», 21000, Dijon, France.
Abstract:
Cellular inhibitor of apoptosis-1 (cIAP1) is a signaling regulator with oncogenic properties. It is involved in the regulation of signaling pathways controlling inflammation, cell survival, proliferation, differentiation and motility. It is recruited into membrane-receptor-associated signaling complexes thanks to the molecular adaptor TRAF2. However, the cIAP1/TRAF2 complex exists, independently of receptor engagement, in several subcellular compartments. The present work strengthens the importance of TRAF2 in the oncogenic properties of cIAP1. cIAPs-deficient mouse embryonic fibroblasts (MEFs) were transformed using the HRas-V12 oncogene. Re-expression of cIAP1 enhanced tumor growth in a nude mice xenograft model, and promoted lung tumor nodes formation. Deletion or mutation of the TRAF2-binding site completely abolished the oncogenic properties of cIAP1. Further, cIAP1 mediated the clustering of TRAF2, which was sufficient to stimulate tumor growth. Our TRAF2 interactome analysis showed that cIAP1 was critical for TRAF2 to bind to its protein partners. Thus, cIAP1 and TRAF2 would be two essential subunits of a signaling complex promoting a pro-tumoral signal. cIAP1/TRAF2 promoted the activation of the canonical NF-κB and ERK1/2 signaling pathways. NF-κB-dependent production of IL-6 triggered the activation of the JAK/STAT3 axis in an autocrine manner. Inhibition or downregulation of STAT3 specifically compromised the growth of cIAP1-restored MEFs but not that of MEFs expressing a cIAP1-mutant and treating mice with the STAT3 inhibitor niclosamide completely abrogated cIAP1/TRAF2-mediated tumor growth. Altogether, we demonstrate that cIAP1/TRAF2 binding is essential to promote tumor growth via the activation of the JAK/STAT3 signaling pathway.
Insights
Cellular inhibitor of apoptosis-1 (cIAP1) and TRAF2 form a complex essential for oncogenic signaling. This complex activates JAK/STAT3, driving tumor growth, and inhibiting STAT3 blocks tumor progression.
Area of Science:
- Molecular Biology
- Oncology
- Cell Signaling
Background:
- Cellular inhibitor of apoptosis-1 (cIAP1) is a signaling regulator implicated in cancer.
- cIAP1 functions within signaling complexes, often involving the molecular adaptor TRAF2.
- The oncogenic role of cIAP1 and its interaction with TRAF2 require further elucidation.
Purpose of the Study:
- To investigate the role of TRAF2 in the oncogenic properties of cIAP1.
- To identify the downstream signaling pathways mediating cIAP1/TRAF2-driven tumor growth.
- To explore therapeutic strategies targeting the cIAP1/TRAF2 signaling axis.
Main Methods:
- Transformation of cIAPs-deficient mouse embryonic fibroblasts (MEFs) with HRas-V12.
- Xenograft tumor growth and lung metastasis studies in nude mice.
- TRAF2 interactome analysis and assessment of signaling pathway activation (NF-κB, ERK1/2, JAK/STAT3).
Main Results:
- Re-expression of cIAP1 enhanced tumor growth and lung metastasis in vivo.
- Disruption of the TRAF2-binding site on cIAP1 abolished its oncogenic potential.
- cIAP1/TRAF2 complex formation activated NF-κB and ERK1/2, leading to IL-6 production and autocrine JAK/STAT3 activation.
- STAT3 inhibition or downregulation compromised tumor growth, and niclosamide treatment abrogated cIAP1/TRAF2-mediated tumor growth.
Conclusions:
- TRAF2 binding is critical for the oncogenic functions of cIAP1.
- The cIAP1/TRAF2 complex promotes tumor growth by activating the JAK/STAT3 signaling pathway.
- Targeting STAT3 represents a potential therapeutic strategy against cIAP1/TRAF2-driven cancers.
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