Ophiopogonin D′ inhibited tumour growth and metastasis of anaplastic thyroid cancer by modulating JUN/RGS4 signalling

Author:

Xu Tong12ORCID,Zhang Wanli3,Zhang Yiwen124ORCID,Song Feifeng12ORCID,Huang Ping124

Affiliation:

1. Center for Clinical Pharmacy, Cancer Center, Department of Pharmacy Zhejiang Provincial People's Hospital (Affiliated People's Hospital), Hangzhou Medical College Hangzhou Zhejiang China

2. Key Laboratory of Endocrine Gland Diseases of Zhejiang Province Hangzhou Zhejiang China

3. Institute of Pharmacology, Department of Pharmaceutical Sciences Zhejiang University of Technology Hangzhou Zhejiang China

4. Clinical Research Center for Cancer of Zhejiang Province Hangzhou Zhejiang China

Abstract

AbstractAnaplastic thyroid cancer (ATC), an aggressive malignancy with virtually 100% disease‐specific mortality, has long posed a formidable challenge in oncology due to its resistance to conventional treatments and the severe side effects associated with current regimens such as doxorubicin chemotherapy. Consequently, there was urgent need to identify novel candidate compounds that could provide innovative therapeutic strategies for ATC. Ophiopogonin D′ (OPD'), a triterpenoid saponin extracted, yet its roles in ATC has not been reported. Our data demonstrated that OPD' potently inhibited proliferation and metastasis of ATC cells, promoting cell cycle arrest and apoptosis. Remarkably, OPD' impeded growth and metastasis of ATC in vitro and in vivo, displaying an encouraging safety profile. Regulator of G‐protein signalling 4 (RGS4) expression was significantly up‐regulated in ATC compared to normal tissues, and this upregulation was suppressed by OPD' treatment. Mechanistically, we elucidated that the transcription factor JUN bound to the RGS4 promoter, driving its transactivation. However, OPD' interacted with JUN, attenuating its transcriptional activity and thereby disrupting RGS4 overexpression. In summary, our research revealed that OPD' bound with JUN, which in turn resulted in the suppression of transcriptional activation of RGS4, thereby eliciting cell cycle arrest and apoptosis in ATC cells. These findings could offer promise in the development of high‐quality candidate compounds for treatment in ATC.

Funder

Chinese Medicine Research Program of Zhejiang Province

National Natural Science Foundation of China

Publisher

Wiley

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