HSP90 shields ROC1/RBX1 from proteasomal degradation by CHIP E3 ubiquitin ligase to promote lung adenocarcinoma

The Regulator of Cullins 1 (ROC1) or RING box protein-1 (RBX1) is an essential component of the largest multiunit Cullin-RING ubiquitin ligase (CRL). Previous studies demonstrated that ROC1 is frequently overexpressed in multiple malignancies, which predicts advanced cancer stages and poor prognosis. However, the molecular mechanisms driving ROC1 overexpression in cancers remain largely unknown. Herein, we reveal that HSP90 binds to ROC1 with its N-Terminus, thus promoting ROC1 stabilization. HSP90 inhibition with the N-Terminal, but not the C-Terminal inhibitors accelerate ROC1 destabilization by facilitating its ubiquitination and subsequent degradation by CHIP E3 ligase. CHIP specifically interacts with ROC1 at its CC domain, thus promoting the K48-linked-ubiquitin-mediated degradation of ROC1 at the K26 residue. Indeed, deletion of CHIP markedly blocks HSP90-inactivation-induced ROC1 reduction. Function exploration reveals that HSP90 inhibition suppresses lung adenocarcinoma (LUAD) cell growth substantially by decreasing ROC1 abundance. In clinic, HSP90β and ROC1 are overexpressed in LUAD samples, which have positive correlation and predict poor prognosis of LUAD patients. LUAD organoids analysis reveals that HSP90 blockage promotes ROC1 destabilization and inhibits the growth of organoid cells. Taken together, the present results demonstrate the regulatory mechanism of ROC1 in malignancies and suggest a novel mechanism of the oncogenic role of HSP90 to promote lung tumorigenesis.

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Journal
Signal Transduction and Targeted Therapy
Published
2026-09-21
DOI
https://doi.org/10.1038/s41392-026-02958-0
Primary Topic
Heat shock proteins research
Type
article
Field-Weighted Citation Impact
0.00

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article

HSP90 shields ROC1/RBX1 from proteasomal degradation by CHIP E3 ubiquitin ligase to promote lung adenocarcinoma

Wenyi Wei, Robert M. Hoffman, Mingsong Wang, Xuhui Yang et al.
Signal Transduction and Targeted Therapy
Heat shock proteins research
article

HSP90 shields ROC1/RBX1 from proteasomal degradation by CHIP E3 ubiquitin ligase to promote lung adenocarcinoma

Wenyi Wei, Robert M. Hoffman, Mingsong Wang, Xuhui Yang, Yunjian Pan, Shiwen Wang, Lihui Li, Yupei Liang, Gaili Chang, Yueren Yan, Lijun Jia, Wenjuan Zhang, Meng Li, Ying Zhang
article en

Abstract

The Regulator of Cullins 1 (ROC1) or RING box protein-1 (RBX1) is an essential component of the largest multiunit Cullin-RING ubiquitin ligase (CRL). Previous studies demonstrated that ROC1 is frequently overexpressed in multiple malignancies, which predicts advanced cancer stages and poor prognosis. However, the molecular mechanisms driving ROC1 overexpression in cancers remain largely unknown. Herein, we reveal that HSP90 binds to ROC1 with its N-Terminus, thus promoting ROC1 stabilization. HSP90 inhibition with the N-Terminal, but not the C-Terminal inhibitors accelerate ROC1 destabilization by facilitating its ubiquitination and subsequent degradation by CHIP E3 ligase. CHIP specifically interacts with ROC1 at its CC domain, thus promoting the K48-linked-ubiquitin-mediated degradation of ROC1 at the K26 residue. Indeed, deletion of CHIP markedly blocks HSP90-inactivation-induced ROC1 reduction. Function exploration reveals that HSP90 inhibition suppresses lung adenocarcinoma (LUAD) cell growth substantially by decreasing ROC1 abundance. In clinic, HSP90β and ROC1 are overexpressed in LUAD samples, which have positive correlation and predict poor prognosis of LUAD patients. LUAD organoids analysis reveals that HSP90 blockage promotes ROC1 destabilization and inhibits the growth of organoid cells. Taken together, the present results demonstrate the regulatory mechanism of ROC1 in malignancies and suggest a novel mechanism of the oncogenic role of HSP90 to promote lung tumorigenesis.

Signal Transduction and Targeted TherapyVol. 11(1)
Nanjing University of Chinese Medicine (CN), Beth Israel Deaconess Medical Center (US), Harvard University (US), Fudan University (CN), University of California San Diego (US), Fudan University Shanghai Cancer Center (CN), Shanghai Ninth People's Hospital (CN), Shanghai University of Traditional Chinese Medicine (CN), Huadong Hospital (CN), Longhua Hospital Shanghai University of Traditional Chinese Medicine (CN), AntiCancer (United States) (US)
National Natural Science Foundation of China, Science and Technology Commission of Shanghai Municipality, Shanghai Rising-Star Program
Openalex Percentile: Top 19%
Heat shock proteins research
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