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SPOP mediates apoptosis and protects against necroptosis by regulating ubiquitination of RIPK1 and RIPK3
Yuzhong Ye, Changjie Yue, Zaosong Zheng, Hailong Ruan, Yuanpeng Zhang, Qi Miao, Xiaoping Zhang, Wen Xiao, Lei Liu
Yuzhong Ye, Changjie Yue, Zaosong Zheng, Hailong Ruan, Yuanpeng Zhang, Qi Miao, Xiaoping Zhang, Wen Xiao, Lei Liu
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Research Article Cell biology Oncology

SPOP mediates apoptosis and protects against necroptosis by regulating ubiquitination of RIPK1 and RIPK3

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Abstract

Apoptosis and necroptosis are 2 distinct destinies of cells stimulated with TNF-α; however, it remains unclear how apoptosis and necroptosis are differentially regulated. This study validates the key regulatory role of speckle-type POZ protein (SPOP) in balancing apoptosis and necroptosis. SPOP promotes the polyubiquitination and degradation of receptor-interacting serine/threonine-protein kinase 3 (RIPK3), thereby inhibiting necrosome formation and decreasing cellular sensitivity to necroptosis. Conversely, SPOP interacted with RIPK1 independently of its E3 ubiquitin ligase activity, protecting it from ubiquitination and degradation, thereby enhancing RIPK1 expression and cellular sensitivity to apoptosis. Inhibiting RIPK1 kinase activity with 7-Cl-O-Nec-1 impeded both SPOP-mediated apoptosis and SPOP deficiency–mediated necroptosis. Besides, inhibition or loss of RIPK3 rescued SPOP deficiency–mediated necroptosis. Pancancer analyses indicated that the SPOP/RIPK1/RIPK3 axis is dysfunctional in a variety of tumors. In 3 representative tumor types with high expression of SPOP and RIPK1, kidney renal clear cell carcinoma, liver hepatocellular carcinoma, and breast invasive carcinoma, this regulatory mechanism remains applicable. Based on these findings, a combination therapy using the second mitochondria-derived activator of caspases (Smac) mimetic SM164 and sunitinib was developed, demonstrating a more pronounced efficacy than sunitinib monotherapy, and this sensitizing effect was dependent on the expression level of RIPK1. These results suggest that the combination of Smac mimetics with tyrosine kinase inhibitors holds potential clinical value for tumors with dysregulated SPOP/RIPK1/RIPK3 signaling.

Authors

Yuzhong Ye, Changjie Yue, Zaosong Zheng, Hailong Ruan, Yuanpeng Zhang, Qi Miao, Xiaoping Zhang, Wen Xiao, Lei Liu

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Figure 5

SPOP correlates with RIPK1 rather than RIPK3 in tumors.

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SPOP correlates with RIPK1 rather than RIPK3 in tumors.
(A) The mRNA exp...
(A) The mRNA expression level of RIPK1, RIPK3, and SPOP between tumor tissues and adjacent normal tissues in TCGA. (B) Correlation analysis between SPOP and RIPK1/RIPK3 in tumors. (C) IB analysis of the protein expression level of RIPK1, RIPK3, and SPOP in different tumor cell lines. (D) The mRNA level of RIPK3 in different tumor cell lines. (E) IB analysis of the protein expression level of RIPK1, RIPK3, and SPOP in RCC tissue samples. (F) IB analysis of the RIPK1/RIPK3 protein level exchange derived from 786-O+RIPK3, HepG2+RIPK3, and MDA-MB-231+RIPK3 transfected with indicated Flag-SPOP. (G) IB analysis of the RIPK1 protein level exchange derived from 786-O, HepG2, and MDA-MB-231 transfected with indicated Flag-SPOP. Cells were treated with 20 μM DMSO or MG132 for 6 hours before harvesting. Results represent at least 3 independent experiments. The significance of differences was revealed based on Student’s t test for 2 unpaired or paired groups. The correlation analysis was conducted using Pearson correlation coefficient (***P < 0.001, **P < 0.01, *P < 0.05).

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