Glyoxalase in tumourigenesis and multidrug resistance

被引:159
作者
Thornalley, Paul J. [1 ]
Rabbani, Naila [1 ]
机构
[1] Univ Warwick, Univ Hosp, Warwick Med Sch, Clin Sci Res Inst, Coventry CV2 2DX, W Midlands, England
关键词
Cancer; Multidrug resistance; Methylglyoxal; Gene amplification; DNA damage; BROMOBENZYLGLUTATHIONE CYCLOPENTYL DIESTER; ADVANCED GLYCATION ENDPRODUCTS; LEUKEMIA-CELLS; IN-VITRO; PROTEOMIC ANALYSIS; OXIDATIVE STRESS; METHYLGLYOXAL; INHIBITORS; SYSTEM; CANCER;
D O I
10.1016/j.semcdb.2011.02.006
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Since the discovery by Warburg of high aerobic glycolysis in most tumours in the 1920s, it has remained unclear how to exploit this in chemotherapy. The aim of this review is to assess the evidence for the involvement of the glyoxalase system in tumour growth and multidrug resistance and the importance of the glyoxalase system as a target for anticancer drug development and a source of biomarkers for tumour diagnosis. Increased expression of glyoxalase 1 appears to support the viability of tumour cells with high glycolytic rates. Multidrug resistance conferred by overexpression of glyoxalase 1 suggests mechanisms of toxicity of most current antitumour agents involve, in some part, accumulation of methylglyoxal to cytotoxic levels. The recent finding of glyoxalase 1 gene amplification in tumours and induction of increased glyoxalase 1 expression by malignant transformation and conventional antitumour drug treatment implies a critical role of glyoxalase 1 in innate and acquired multidrug resistance in cancer treatment. Improved understanding of glyoxalase 1 in cancer chemotherapy multidrug resistance is likely vital to achieve improvement of cancer patient survival rates. Advances made to counter glyoxalase 1-linked multidrug resistance with glyoxalase 1 inhibitors and related prodrugs has been translated from in vitro to pre-clinical in vivo studies. Further research is required urgently for next stage clinical translation. Finally, overexpression of glyoxalase 1 may be linked to multidrug resistance in chemotherapy of other disease - such as microbial infections. (C) 2011 Elsevier Ltd. All rights reserved.
引用
收藏
页码:318 / 325
页数:8
相关论文
共 83 条
[1]   Accumulation of α-oxoaldehydes during oxidative stress:: A role in cytotoxicity [J].
Abordo, EA ;
Minhas, HS ;
Thornalley, PJ .
BIOCHEMICAL PHARMACOLOGY, 1999, 58 (04) :641-648
[2]  
Ahmed N, 2002, BIOCHEM J, V364, P1
[3]   A SIMPLIFIED METHOD FOR THE PURIFICATION OF HUMAN RED-BLOOD-CELL GLYOXALASE .1. CHARACTERISTICS, IMMUNOBLOTTING, AND INHIBITOR STUDIES [J].
ALLEN, RE ;
LO, TWC ;
THORNALLEY, PJ .
JOURNAL OF PROTEIN CHEMISTRY, 1993, 12 (02) :111-119
[4]   Tissue-wide expression profiling using cDNA subtraction and microarrays to identify tumor-specific genes [J].
Amatschek, S ;
Koenig, U ;
Auer, H ;
Steinlein, P ;
Pacher, M ;
Gruenfelder, A ;
Dekan, G ;
Vogl, S ;
Kubista, E ;
Heider, KH ;
Stratowa, C ;
Schreiber, M ;
Sommergruber, W .
CANCER RESEARCH, 2004, 64 (03) :844-856
[5]  
APPLE MARTIN A., 1967, CANCER CHEMOTHER REP, V51, P455
[6]   INHIBITION OF PROLIFERATION OF HUMAN LEUKEMIA 60-CELLS BY METHYLGLYOXAL INVITRO [J].
AYOUB, FM ;
ALLEN, RE ;
THORNALLEY, PJ .
LEUKEMIA RESEARCH, 1993, 17 (05) :397-401
[7]   Methotrexate inhibits the glyoxalase system in vivo in children with acute lymphoid leukaemia [J].
Bartyik, K ;
Turi, S ;
Orosz, F ;
Karg, E .
EUROPEAN JOURNAL OF CANCER, 2004, 40 (15) :2287-2292
[8]   Protective effects of garlic sulfur compounds against DNA damage induced by direct- and indirect-acting genotoxic agents in HepG2 cells [J].
Belloir, C. ;
Singh, V. ;
Daurat, C. ;
Siess, M. H. ;
Le Bon, A. M. .
FOOD AND CHEMICAL TOXICOLOGY, 2006, 44 (06) :827-834
[9]   Posttranslational Modification of Human Glyoxalase 1 Indicates Redox-Dependent Regulation [J].
Birkenmeier, Gerd ;
Stegemann, Christin ;
Hoffmann, Ralf ;
Guenther, Robert ;
Huse, Klaus ;
Birkemeyer, Claudia .
PLOS ONE, 2010, 5 (04)
[10]   Apoptotic signaling in methylglyoxal-treated human osteoblasts involves oxidative stress, c-jun N-terminal kinase, caspase-3, and p21-activated kinase 2 [J].
Chan, Wen-Hsiung ;
Wu, Hsin-Jung ;
Shiao, Nion-Heng .
JOURNAL OF CELLULAR BIOCHEMISTRY, 2007, 100 (04) :1056-1069