BUB1/KIF14 complex promotes anaplastic thyroid carcinoma progression by inducing chromosome instability

Author:

Jin Tiefeng1,Ding Lingling1,Chen Jinming2,Zou Xiaozhou2ORCID,Xu Tong2ORCID,Xuan Zixue2,Wang Shanshan2,Chen Jianqiang2,Wang Wei3,Zhu Chaozhuang2,Zhang Yiwen24ORCID,Huang Ping24,Pan Zongfu24,Ge Minghua145ORCID

Affiliation:

1. Otolaryngology & Head and Neck Center, Cancer Center, Department of Head and Neck Surgery Zhejiang Provincial People's Hospital, Affiliated People's Hospital, Hangzhou Medical College Hangzhou China

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

3. Department of Pathology, Laboratory Medicine Center Zhejiang Provincial People's Hospital, Affiliated People's Hospital, Hangzhou Medical College Hangzhou China

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

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

Abstract

AbstractChromosome instability (CIN) is a common contributor driving the formation and progression of anaplastic thyroid cancer (ATC), but its mechanism remains unclear. The BUB1 mitotic checkpoint serine/threonine kinase (BUB1) is responsible for the alignment of mitotic chromosomes, which has not been thoroughly studied in ATC. Our research demonstrated that BUB1 was remarkably upregulated and closely related to worse progression‐free survival. Knockdown of BUB1 attenuated cell viability, invasion, migration and induced cell cycle arrests, whereas overexpression of BUB1 promoted the cell cycle progression of papillary thyroid cancer cells. BUB1 knockdown remarkably repressed tumour growth and tumour formation of nude mice with ATC xenografts and suppressed tumour metastasis in a zebrafish xenograft model. Inhibition of BUB1 by its inhibitor BAY‐1816032 also exhibited considerable anti‐tumour activity. Further studies showed that enforced expression of BUB1 evoked CIN in ATC cells. BUB1 induced CIN through phosphorylation of KIF14 at serine1292 (Ser1292). Overexpression of the KIF14ΔSer1292 mutant was unable to facilitate the aggressiveness of ATC cells when compared with that of the wild type. Collectively, these findings demonstrate that the BUB1/KIF14 complex drives the aggressiveness of ATC by inducing CIN.

Funder

Chinese Medicine Research Program of Zhejiang Province

National Natural Science Foundation of China

Natural Science Foundation of Zhejiang Province

Publisher

Wiley

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