Experimental Hematology & Oncology · Published 2026-07-30 · DOI 10.1186/s40164-026-00800-5
Guiming Li, Jun Wang, Shiguang Ye, Lixin Zhou, Yanli Sun, Bowen Li, Yunshuo Zhao, Yi Ding, Yu Zeng, Bin Xue, Guangming Wang, Fangce Wang, Xiu Luo, Aibin Liang, Ellen L. Weisberg, Wenjun Zhang, Wenchao Lu, Jing Yang
Abstract The nucleophosmin-anaplastic lymphoma kinase (NPM-ALK) fusion constitutively activates ALK tyrosine kinase, driving oncogenesis in anaplastic large cell lymphoma (ALCL). While arsenic trioxide (ATO) exhibits therapeutic potential, its precise mechanism remains elusive, limiting clinical application. Here, we used a combined approach of E3 ligase library screening, ATO chemical proteomics, and NPM-ALK immunoprecipitation–mass spectrometry to reveal that ATO regulates NPM-ALK stability via the E3 ligase STUB1. Clinically, high STUB1 expression correlates with improved survival, identifying it as a candidate favorable prognostic biomarker in NPM-ALK+ ALCL. Mechanistically, ATO promotes a glue‑like interaction that stabilizes the ternary complex of STUB1 and NPM-ALK, promoting ubiquitination at K174 and subsequent proteasomal degradation. Furthermore, structural modeling, domain mapping, and point mutations support a proposed arsenic-dependent interaction model involving STUB1 Cys83, Cys103, and NPM-ALK Cys599, which may modulate the STUB1–NPM-ALK interface and enhance their interaction, thereby promoting ubiquitin-mediated degradation. Crucially, we demonstrate that STUB1 overexpression or pharmacological activation using the FDA-approved cardiac glycoside Deslanoside synergizes profoundly with ATO to inhibit tumor growth both in vitro and in vivo. These findings provide novel mechanistic insight into ATO’s action in NPM-ALK+ ALCL and reveal new therapeutic strategies and candidate prognostic biomarkers for patient management. Graphical Abstract Arsenic trioxide promotes a glue-like interaction through a proposed arsenic-dependent interaction model involving STUB1 and ALK, facilitating K174 ubiquitination and degradation of oncogenic NPM-ALK. High STUB1 expression correlates with favorable survival in NPM-ALK⁺ ALCL, and its pharmacologic activation synergizes with ATO, suggesting a mechanistically precise and clinically actionable degradation strategy
Abstract from DOAJ. Public domain (CC0 1.0).
Read the article at the publisher →
Li, G., Wang, J., Ye, S., et al. (2026). Arsenic trioxide promotes a glue‑like interaction to drive STUB1-mediated NPM-ALK degradation in ALK+ ALCL. Experimental Hematology & Oncology. https://doi.org/10.1186/s40164-026-00800-5