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Tetrathiomolybdate induces dimerization of the metal-binding domain of ATPase and inhibits platination of the protein.


ABSTRACT: Tetrathiomolybdate (TM) is used in the clinic for the treatment of Wilson's disease by targeting the cellular copper efflux protein ATP7B (WLN). Interestingly, both TM and WLN are associated with the efficacy of cisplatin, a widely used anticancer drug. Herein, we show that TM induces dimerization of the metal-binding domain of ATP7B (WLN4) through a unique sulfur-bridged Mo2S6O2 cluster. TM expels copper ions from Cu-WLN4 and forms a copper-free dimer. The binding of Mo to cysteine residues of WLN4 inhibits platination of the protein. Reaction with multi-domain proteins indicates that TM can also connect two domains in the same molecule, forming Mo-bridged intramolecular crosslinks. These results provide structural and chemical insight into the mechanism of action of TM against ATPase, and reveal the molecular mechanism by which TM attenuates the cisplatin resistance mediated by copper efflux proteins.

SUBMITTER: Fang T 

PROVIDER: S-EPMC6331642 | biostudies-literature | 2019 Jan

REPOSITORIES: biostudies-literature

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Tetrathiomolybdate induces dimerization of the metal-binding domain of ATPase and inhibits platination of the protein.

Fang Tiantian T   Chen Wanbiao W   Sheng Yaping Y   Yuan Siming S   Tang Qiaowei Q   Li Gongyu G   Huang Guangming G   Su Jihu J   Zhang Xuan X   Zang Jianye J   Liu Yangzhong Y  

Nature communications 20190114 1


Tetrathiomolybdate (TM) is used in the clinic for the treatment of Wilson's disease by targeting the cellular copper efflux protein ATP7B (WLN). Interestingly, both TM and WLN are associated with the efficacy of cisplatin, a widely used anticancer drug. Herein, we show that TM induces dimerization of the metal-binding domain of ATP7B (WLN4) through a unique sulfur-bridged Mo<sub>2</sub>S<sub>6</sub>O<sub>2</sub> cluster. TM expels copper ions from Cu-WLN4 and forms a copper-free dimer. The bindi  ...[more]

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