Fluoxetine mediates G0/G1 arrest by inducing functional inhibition of cyclin dependent kinase subunit (CKS)1

被引:63
|
作者
Krishnan, Anand [1 ]
Hariharan, Ramikumar [1 ]
Nair, S. Asha [1 ]
Pillai, M. Radhakrishna [1 ]
机构
[1] Rajiv Gandhi Ctr Biotechnol, Dept Mol Med, Translat Canc Res, Trivandrum 695014, Kerala, India
关键词
CKS1; Fluoxetine; cell cycle arrest; p27; docking;
D O I
10.1016/j.bcp.2008.02.013
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Fluoxetine, a well-known antidepressant used clinically for mental depression has gained attention in cancer research owing to its chemosensitizing potential in drug resistant cell lines. Some preliminary reports, however, suggested its independent cytotoxic potential which is not yet well characterized. Our aim in this study was to characterize its anti-proliferative activity in tumor cells and to further elucidate the mechanism. We found that fluoxetine sensitized the effect of cyclophosphamide even in drug sensitive MDA MB 231 and SiHa cells. IC50 values of 28 and 32 mu M were obtained for fluoxetine mediated anti-proliferative response in these cells. Further, PARP and caspase 3 cleavage analyses confirmed fluoxetine mediated apoptosis at molecular level. Cell cycle analysis showed that fluoxetine arrested cells at G0/G1 phase in a time dependent manner. The application of bioinformatics tools at this juncture predicted CKS1 as one of the possible targets of fluoxetine, which is of relevance to cell cycle biology. Fluoxetine showed the potential to disrupt skp2-CKS1 assembly required for ubiquitination and proteasomal degradation of p27 and p21. Our in vitro results were in agreement with the predictions made in silico. We found that fluoxetine treatment could accumulate p27 and p21, an immediate outcome characteristic of functional inhibition of CKS1. This was accompanied by the accumulation of cyclin E, another possible target of CKS1. We observed CKS1 downregulation also upon prolonged fluoxetine treatment. Fluoxetine had downregulated cyclin A which confirmed G0/G1 arrest at the molecular level. We conclude that fluoxetine induced cell cycle arrest is CKS1 dependent. (C) 2008 Elsevier Inc. All rights reserved.
引用
收藏
页码:1924 / 1934
页数:11
相关论文
共 50 条
  • [21] THE CDK-ACTIVATING KINASE CAK CONTAINS A NOVEL CYCLIN (CYCLIN-H) AND IS REGULATED DURING THE G0/G1 TRANSITION
    MAKELA, TP
    WEINBERG, RA
    JOURNAL OF CELLULAR BIOCHEMISTRY, 1995, : 70 - 70
  • [22] Inhibition of G1 cyclin-dependent kinase activity in cell density-dependent growth arrest in human fibroblasts
    Afrakhte, M
    Heldin, NE
    Westermark, B
    CELL GROWTH & DIFFERENTIATION, 1998, 9 (12): : 983 - 988
  • [23] The role of ERK MAP kinase in the G0/G1 to S phase transition
    Ebisuya, Miki
    Yamamoto, Takuya
    Nishida, Eisuke
    CELL STRUCTURE AND FUNCTION, 2004, 29 : 77 - 77
  • [24] Cdh1: a master G0/G1 regulator
    Skaar, Jeffrey R.
    Pagano, Michele
    NATURE CELL BIOLOGY, 2008, 10 (07) : 755 - 757
  • [25] Cdh1: a master G0/G1 regulator
    Jeffrey R. Skaar
    Michele Pagano
    Nature Cell Biology, 2008, 10 : 755 - 757
  • [26] Reappraisal of serum starvation, the restriction point, G0, and G1 phase arrest points
    Cooper, S
    FASEB JOURNAL, 2003, 17 (03): : 333 - 340
  • [27] Tetrazolium violet induces G0/G1 arrest and apoptosis in brain tumor cells
    Zhao, Yunfeng
    Zhang, Nan
    Kong, Qingzhong
    JOURNAL OF NEURO-ONCOLOGY, 2006, 77 (02) : 109 - 115
  • [28] GSK3β-dependent cyclin D1 and cyclin E1 degradation is indispensable for NVP-BEZ235 induced G0/G1 arrest in neuroblastoma cells
    Liu, Shan-Ling
    Liu, Zhen
    Zhang, Li-Di
    Zhu, Han-Qing
    Guo, Jia-Hui
    Zhao, Mei
    Wu, Ying-Li
    Liu, Feng
    Gao, Feng-Hou
    CELL CYCLE, 2017, 16 (24) : 2386 - 2395
  • [29] BAD/BCL-xL heterodimerization leads to bypass of G0/G1 arrest
    Anuja Chattopadhyay
    Chi-Wu Chiang
    Elizabeth Yang
    Oncogene, 2001, 20 : 4507 - 4518
  • [30] Murine coronavirus replication induces cell cycle arrest in G0/G1 phase
    Chen, CJ
    Makino, S
    JOURNAL OF VIROLOGY, 2004, 78 (11) : 5658 - 5669