1. Academic Validation
  2. NDR1/FBXO11 promotes phosphorylation-mediated ubiquitination of β-catenin to suppress metastasis in prostate cancer

NDR1/FBXO11 promotes phosphorylation-mediated ubiquitination of β-catenin to suppress metastasis in prostate cancer

  • Int J Biol Sci. 2024 Sep 16;20(12):4957-4977. doi: 10.7150/ijbs.98907.
Zuodong Xuan 1 Chen Chen 2 Huimin Sun 1 Kunao Yang 3 Jinxin Li 3 Meilin Fu 3 Yang Bai 3 Zeyuan Zheng 3 Yue Zhao 1 Chunlan Xu 3 Bin Liu 3 Tian Li 4 Chen Shao 1
Affiliations

Affiliations

  • 1 Department of urology, Xiang'an Hospital, Xiamen University, Xiamen, China.
  • 2 Department of urology, First People's Hospital of Linping District, Hangzhou, China.
  • 3 School Of Medicine, Xiamen University, Xiamen, China.
  • 4 School of Basic Medicine, Fourth Military Medical University, Xi'an 710032, China.
Abstract

Background: Prostate Cancer progression hinges on β-catenin's stability and activity, a key factor in epithelial-mesenchymal transition (EMT) and metastasis. This study delves into NDR1-dependent phosphorylation's impact on β-catenin via FBXO11, an E3 ubiquitin Ligase, in prostate Cancer cells. Methods: Human prostate Cancer cell lines underwent various in vitro assays, including Real-Time PCR, Western blotting, immunoprecipitation, immunofluorescence, and protein stability assays, to explore β-catenin's interactions and post-translational modifications. NDR1 modulation's in vivo efficacy was assessed using a nude mice lung metastasis model. Small-molecule screening identified a potential NDR1 activator, aNDR1, tested for its effects on metastasis via in vitro and in vivo assays. Results: NDR1 phosphorylated β-catenin at Ser33/37, facilitating its interaction with FBXO11. This led to FBXO11-mediated ubiquitination and cytoplasmic degradation of β-catenin, while the NDR1-FBXO11 complex impeded β-catenin nuclear translocation by inducing JNK2 ubiquitination. Thus, NDR1 and FBXO11 jointly regulate β-catenin activity in prostate Cancer cells through dual phosphorylation-driven ubiquitination, potentially suppressing EMT. Reduced NDR1 expression inhibited FBXO11 and β-catenin phosphorylation, diminishing β-catenin and JNK2 ubiquitination, promoting EMT and enhancing prostate Cancer cell metastasis. The inhibitory effects of aNDR1 on prostate Cancer metastasis were validated. Conclusion: The NDR1/FBXO11 axis outlines a non-canonical β-catenin degradation pathway crucial in regulating EMT and prostate Cancer cell metastasis. NDR1 activation, particularly with aNDR1, could offer a promising therapeutic avenue against prostate Cancer metastasis.

Keywords

Epithelial-mesenchymal transition; FBXO11; Metastasis; NDR1; Phosphorylation; Prostate cancer; Ubiquitination.

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