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Arsenic trioxide targets Hsp60, triggering degradation of p53 and survivin.
Hu, Xuqiao; Li, Hongyan; Ip, Tiffany Ka-Yan; Cheung, Yam Fung; Koohi-Moghadam, Mohamad; Wang, Haibo; Yang, Xinming; Tritton, Daniel N; Wang, Yuchuan; Wang, Yi; Wang, Runming; Ng, Kwan-Ming; Naranmandura, Hua; Tse, Eric Wai-Choi; Sun, Hongzhe.
Afiliación
  • Hu X; Department of Chemistry and CAS-HKU Joint Laboratory of Metallomics on Health and Environment, The University of Hong Kong Hong Kong SAR P. R. China hsun@hku.hk.
  • Li H; Department of Chemistry and CAS-HKU Joint Laboratory of Metallomics on Health and Environment, The University of Hong Kong Hong Kong SAR P. R. China hsun@hku.hk.
  • Ip TK; Department of Chemistry and CAS-HKU Joint Laboratory of Metallomics on Health and Environment, The University of Hong Kong Hong Kong SAR P. R. China hsun@hku.hk.
  • Cheung YF; Department of Chemistry and CAS-HKU Joint Laboratory of Metallomics on Health and Environment, The University of Hong Kong Hong Kong SAR P. R. China hsun@hku.hk.
  • Koohi-Moghadam M; Department of Chemistry and CAS-HKU Joint Laboratory of Metallomics on Health and Environment, The University of Hong Kong Hong Kong SAR P. R. China hsun@hku.hk.
  • Wang H; Division of Applied Oral Sciences and Community Dental Care, Faculty of Dentistry, University of Hong Kong Hong Kong SAR P. R. China.
  • Yang X; Department of Chemistry and CAS-HKU Joint Laboratory of Metallomics on Health and Environment, The University of Hong Kong Hong Kong SAR P. R. China hsun@hku.hk.
  • Tritton DN; Department of Chemistry and CAS-HKU Joint Laboratory of Metallomics on Health and Environment, The University of Hong Kong Hong Kong SAR P. R. China hsun@hku.hk.
  • Wang Y; Department of Chemistry and CAS-HKU Joint Laboratory of Metallomics on Health and Environment, The University of Hong Kong Hong Kong SAR P. R. China hsun@hku.hk.
  • Wang Y; Department of Chemistry and CAS-HKU Joint Laboratory of Metallomics on Health and Environment, The University of Hong Kong Hong Kong SAR P. R. China hsun@hku.hk.
  • Wang R; Department of Chemistry and CAS-HKU Joint Laboratory of Metallomics on Health and Environment, The University of Hong Kong Hong Kong SAR P. R. China hsun@hku.hk.
  • Ng KM; Department of Chemistry and CAS-HKU Joint Laboratory of Metallomics on Health and Environment, The University of Hong Kong Hong Kong SAR P. R. China hsun@hku.hk.
  • Naranmandura H; Department of Chemistry and CAS-HKU Joint Laboratory of Metallomics on Health and Environment, The University of Hong Kong Hong Kong SAR P. R. China hsun@hku.hk.
  • Tse EW; Department of Chemistry, Shantou University Shantou Guangdong 515063 P. R. China.
  • Sun H; Department of Toxicology, School of Medicine and Public Health, Zhejiang University Hangzhou P.R. China.
Chem Sci ; 12(32): 10893-10900, 2021 Aug 18.
Article en En | MEDLINE | ID: mdl-34476069
ABSTRACT
The mechanisms of action of arsenic trioxide (ATO), a clinically used drug for the treatment of acute promyelocytic leukemia (APL), have been actively studied mainly through characterization of individual putative protein targets. There appear to be no studies at a system level. Herein, we integrate metalloproteomics through a newly developed organoarsenic probe, As-AC (C20H17AsN4O3S2) with quantitative proteomics, allowing 37 arsenic binding and 250 arsenic regulated proteins to be identified in NB4, a human APL cell line. Bioinformatics analysis reveals that ATO disrupts multiple physiological processes, in particular, chaperone-related protein folding and cellular response to stress. Furthermore, we discover heat shock protein 60 (Hsp60) as a vital target of ATO. Through biophysical and cell-based assays, we demonstrate that ATO binds to Hsp60, leading to abolishment of Hsp60 refolding capability. Significantly, the binding of ATO to Hsp60 disrupts the formation of Hsp60-p53 and Hsp60-survivin complexes, resulting in degradation of p53 and survivin. This study provides significant insights into the mechanism of action of ATO at a systemic perspective, and serves as guidance for the rational design of metal-based anticancer drugs.

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Tipo de estudio: Guideline Idioma: En Revista: Chem Sci Año: 2021 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Tipo de estudio: Guideline Idioma: En Revista: Chem Sci Año: 2021 Tipo del documento: Article
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