4.6 Article

Cellular and computational studies of proteasome inhibition and apoptosis induction in human cancer cells by amino acid Schiff base-copper complexes

Journal

JOURNAL OF INORGANIC BIOCHEMISTRY
Volume 118, Issue -, Pages 83-93

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.jinorgbio.2012.10.006

Keywords

Anticancer; Drug discovery; Molecular modeling; Proteasome inhibitors; Apoptosis; Copper complexes

Funding

  1. National Natural Science Foundation of China [20971115, 21071134]
  2. NIH/NCI [1R01CA120009, 3R01CA120009-04S1, 5R01CA127258]
  3. Chinese Scholarship Council
  4. NATIONAL CANCER INSTITUTE [P30CA022453, R01CA127258, R01CA120009] Funding Source: NIH RePORTER

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Proliferation and apoptosis pathways are tightly regulated in a cell by the ubiquitin-proteasome system (UPS) and alterations in the UPS may result in cellular transformation or other pathological conditions. Indeed, the proteasome is often found to be overactive in cancer cells. It has also been found that cancer cells are more sensitive to proteasome inhibition than normal cells, and therefore proteasome inhibitors are pursued as antitumor drugs. The use of the proteasome inhibitor Bortezomib for treatment of multiple myeloma and mantle cell lymphoma has proved this principle. Recent studies have suggested that copper complexes can inhibit proteasome activity and induce apoptosis in some human cancer cells. However, the involved molecular mechanism is unknown. In this study, we investigated the biological activities of four amino acid Schiff base-copper(II) complexes by using human breast (MDA-MB-231 and MCF-7) and prostate (PC-3) cancer cells. The complexes C1 and C3, but not their counterparts C2 and C4, inhibit the chymotrypsin-like activity of purified 20S proteasome and human cancer cellular 26S proteasome, cause accumulation of proteasome target proteins Bax and I kappa B-alpha, and induce growth inhibition and apoptosis in concentration- and time-dependent manners. Docking analysis shows that C1, but not C2 has hydrophobic, pi-pi, pi-cation and hydrogen bond interactions with the proteasomal chymotrypsin-like pocket and could stably fit into the S3 region, leading to specific inhibition. Our study has identified the mechanism of action of these copper complexes on inhibiting tumor cell proteasome and suggested their great potential as novel anticancer agents. (C) 2012 Elsevier Inc. All rights reserved.

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