Redox regulation of Cdc25B by cell-active quinolinediones

被引:76
作者
Brisson, M
Nguyen, T
Wipf, P
Joo, B
Day, BW
Skoko, JS
Schreiber, EM
Foster, C
Bansal, P
Lazo, JS
机构
[1] Univ Pittsburgh, Dept Pharmacol, Pittsburgh, PA 15260 USA
[2] Univ Pittsburgh, Dept Pharmaceut Sci, Pittsburgh, PA 15260 USA
[3] Univ Pittsburgh, Dept Chem, Pittsburgh, PA 15260 USA
[4] Univ Pittsburgh, Ctr Chem Methodologies & Library Dev, Pittsburgh, PA 15260 USA
关键词
D O I
10.1124/mol.105.016360
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Intracellular reduction and oxidation pathways regulate protein functionality through both reversible and irreversible mechanisms. The Cdc25 phosphatases, which control cell cycle progression, are potential subjects of oxidative regulation. Many of the more potent Cdc25 phosphatase inhibitors reported to date are quinones, which are capable of redox cycling. Therefore, we used the previously characterized quinolinedione Cdc25 inhibitor DA3003-1 [NSC 663284 or 6-chloro-7-(2-morpholin-4yl-ethylamino)-quinoline-5,8-dione] and a newly synthesized congener JUN1111 [7-(2-morpholin-4-yl-ethylamino)-quinoline5,8-dione] to test the hypothesis that quinone inhibitors of Cdc25 regulate phosphatase activity through redox mechanisms. Like DA3003-1, JUN1111 selectively inhibited Cdc25 phosphatases in vitro in an irreversible, time-dependent manner and arrested cells in the G(1) and G(2)/M phases of the cell cycle. It is noteworthy that both DA3003-1 and JUN1111 directly inhibited Cdc25B activity in cells. Depletion of glutathione increased cellular sensitivity to DA3003-1 and JUN1111, and in vitro Cdc25B inhibition by these compounds was sensitive to pH, catalase, and reductants ( dithiothreitol and glutathione), consistent with oxidative inactivation. In addition, both DA3003-1 and JUN1111 rapidly generated intracellular reactive oxygen species. Analysis of Cdc25B by mass spectrometry revealed sulfonic acid formation on the catalytic cysteine of Cdc25B after in vitro treatment with DA3003-1. These results indicate that irreversible oxidation of the catalytic cysteine of Cdc25B is indeed a mechanism by which these quinolinediones inactivate this protein phosphatase.
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页码:1810 / 1820
页数:11
相关论文
共 45 条
[1]   Enhanced sensitivity and long-term G2 arrest in hydrogen peroxide-treated Ku80-Null cells are unrelated to DNA repair defects [J].
Arrington, ED ;
Caldwell, MC ;
Kumaravel, TS ;
Lohani, A ;
Joshi, A ;
Evans, MK ;
Chen, HT ;
Nussenzweig, A ;
Holbrook, NJ ;
Gorospe, M .
FREE RADICAL BIOLOGY AND MEDICINE, 2000, 29 (11) :1166-1176
[2]   OXIDATION OF PHENOLS TO QUINONES BY BIS(TRIFLUOROACETOXY)IODOBENZENE [J].
BARRET, R ;
DAUDON, M .
TETRAHEDRON LETTERS, 1990, 31 (34) :4871-4872
[3]   Regulation of PTP1B via glutathionylation of the active site cysteine 215 [J].
Barrett, WC ;
DeGnore, JP ;
König, S ;
Fales, HM ;
Keng, YF ;
Zhang, ZY ;
Yim, MB ;
Chock, PB .
BIOCHEMISTRY, 1999, 38 (20) :6699-6705
[4]   The oxidative mechanism of action of ortho-quinone inhibitors of protein-tyrosine phosphatase α is mediated by hydrogen peroxide [J].
Bova, MP ;
Mattson, MN ;
Vasile, S ;
Tam, D ;
Holsinger, L ;
Bremer, M ;
Hui, T ;
McMahon, G ;
Rice, A ;
Fukuto, JM .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 2004, 429 (01) :30-41
[5]   Discovery and characterization of novel small molecule inhibitors of human Cdc25B dual specificity phosphatase [J].
Brisson, M ;
Nguyen, T ;
Vogt, A ;
Yalowich, J ;
Giorgianni, A ;
Tobi, D ;
Bahar, I ;
Stephenson, CRJ ;
Wipf, P ;
Lazo, JS .
MOLECULAR PHARMACOLOGY, 2004, 66 (04) :824-833
[6]   Structural mechanism of oxidative regulation of the phosphatase Cdc25B via an intramolecular disulfide bond [J].
Buhrman, G ;
Parker, B ;
Sohn, J ;
Rudolph, J ;
Mattos, C .
BIOCHEMISTRY, 2005, 44 (14) :5307-5316
[7]   Role of the Cdc25A phosphatase in human breast cancer [J].
Cangi, MG ;
Cukor, B ;
Soung, P ;
Signoretti, S ;
Moreira, G ;
Ranashinge, M ;
Cady, B ;
Pagano, M ;
Loda, M .
JOURNAL OF CLINICAL INVESTIGATION, 2000, 106 (06) :753-761
[8]   Dual-specific Cdc25B phosphatase: In search of the catalytic acid [J].
Chen, W ;
Wilborn, M ;
Rudolph, J .
BIOCHEMISTRY, 2000, 39 (35) :10781-10789
[9]   ISOLATION AND STRUCTURAL ELUCIDATION OF A NOVEL PHOSPHOCYSTEINE INTERMEDIATE IN THE LAR PROTEIN TYROSINE PHOSPHATASE ENZYMATIC PATHWAY [J].
CHO, HJ ;
KRISHNARAJ, R ;
KITAS, E ;
BANNWARTH, W ;
WALSH, CT ;
ANDERSON, KS .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1992, 114 (18) :7296-7298
[10]   Redox regulation of PTEN and protein tyrosine phosphatases in H2O2-mediated cell signaling [J].
Cho, SH ;
Lee, CH ;
Ahn, Y ;
Kim, H ;
Kim, H ;
Ahn, CY ;
Yang, KS ;
Lee, SR .
FEBS LETTERS, 2004, 560 (1-3) :7-13