Clinical relevance of MGMT in the treatment of cancer

被引:360
作者
Gerson, SL
机构
[1] Case Western Reserve Univ, Univ Hosp Cleveland, Sch Med, Div Hematol Oncol, Cleveland, OH 44106 USA
[2] Case Western Reserve Univ, Univ Hosp Cleveland, Sch Med, Ctr Comprehens Canc, Cleveland, OH 44106 USA
[3] Univ Hosp Cleveland, Res Inst, Cleveland, OH 44106 USA
关键词
D O I
10.1200/JCO.2002.06.110
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
A number of DNA-damaging chemotherapeutic agents attack the O-6 position on guanine, forming the most potent cytotoxic DNA adducts known. The DNA repair enzyme O-6-alkylguanine DNA alkyltransferase (AGT), encoded by the gene MGMT, repairs alkylation at this site and is responsible for protecting both tumor and normal cells from these agents. Cells and tissues vary greatly in AGT expression, not only between tissues but also between individuals. AGT activity correlates inversely with sensitivity to agents that form O-6-alkylguanine DNA adducts, such as carmustine (BCNU), temozolomide, streptozotocin, and dacarbazine. The one exception is those tumors lacking mismatch repair, which renders them resistant to methylating agents. A recent study in patients with gliomas confirmed the correlation between low-level expression of the MGMT gene and response and survival after BCNU. An inhibitor to AGT, O-6-benzylguanine (BG), depletes AGT in human tumors without associated toxicity and is now in phase 11 clinical trials. Finally, mutations within the active site region of the MGMT gene render the AGT protein resistant to BG inactivation. As a result, mutant MGMT gene transfer into hematopoietic stem cells has been shown to selectively protect the marrow from the combination of an alkylating agent and BG, while at the some time sensitizing tumor cells. MGMT remains a paradigm for development of new agents that modulate known mechanisms of drug resistance in cancer cells and raise the spectra of combinatorial therapies that encompass known drug resistance mechanisms.
引用
收藏
页码:2388 / 2399
页数:12
相关论文
共 104 条
[21]   INCREASED CYTOTOXICITY OF 1-(2-CHLOROETHYL)-1-NITROSO-3(4-METHYL)-CYCLOHEXYLUREA BY PRETREATMENT WITH O-6-METHYLGUANINE IN RESISTANT BUT NOT IN SENSITIVE HUMAN-MELANOMA CELLS [J].
DEMPKE, W ;
NEHLS, P ;
WANDL, U ;
SOLL, D ;
SCHMIDT, CG ;
OSIEKA, R .
JOURNAL OF CANCER RESEARCH AND CLINICAL ONCOLOGY, 1987, 113 (04) :387-391
[22]   DEPLETION OF O-6-ALKYLGUANINE-DNA ALKYLTRANSFERASE ACTIVITY IN MAMMALIAN-TISSUES AND HUMAN-TUMOR XENOGRAFTS IN NUDE-MICE BY TREATMENT WITH O-6-METHYLGUANINE [J].
DOLAN, ME ;
LARKIN, GL ;
ENGLISH, HF ;
PEGG, AE .
CANCER CHEMOTHERAPY AND PHARMACOLOGY, 1989, 25 (02) :103-108
[23]   O6-benzylguanine in humans:: Metabolic, pharmacokinetic, and pharmacodynamic findings [J].
Dolan, ME ;
Roy, SK ;
Fasanmade, AA ;
Paras, PR ;
Schilsky, RL ;
Ratain, MJ .
JOURNAL OF CLINICAL ONCOLOGY, 1998, 16 (05) :1803-1810
[24]   EFFECT OF O6-BENZYLGUANINE ON THE RESPONSE TO 1,3-BIS(2-CHLOROETHYL)-1-NITROSOUREA IN THE DUNNING-R3327G MODEL OF PROSTATIC-CANCER [J].
DOLAN, ME ;
PEGG, AE ;
BISER, ND ;
MOSCHEL, RC ;
ENGLISH, HF .
CANCER CHEMOTHERAPY AND PHARMACOLOGY, 1993, 32 (03) :221-225
[25]  
DOLAN ME, 1991, CANCER RES, V51, P3367
[26]  
DOLAN ME, 1986, CANCER RES, V46, P4500
[27]   MODULATION OF MAMMALIAN O-6-ALKYLGUANINE-DNA ALKYLTRANSFERASE INVIVO BY O-6-BENZYLGUANINE AND ITS EFFECT ON THE SENSITIVITY OF A HUMAN GLIOMA TUMOR TO 1-(2-CHLOROETHYL)-3-(4-METHYLCYCLOHEXYL)-1-NITROSOUREA [J].
DOLAN, ME ;
STINE, L ;
MITCHELL, RB ;
MOSCHEL, RC ;
PEGG, AE .
CANCER COMMUNICATIONS, 1990, 2 (11) :371-377
[28]   DEPLETION OF MAMMALIAN OXYGEN-6-ALKYLGUANINE-DNA ALKYLTRANSFERASE ACTIVITY BY OXYGEN-6-BENZYLGUANINE PROVIDES A MEANS TO EVALUATE THE ROLE OF THIS PROTEIN IN PROTECTION AGAINST CARCINOGENIC AND THERAPEUTIC ALKYLATING-AGENTS [J].
DOLAN, ME ;
MOSCHEL, RC ;
PEGG, AE .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1990, 87 (14) :5368-5372
[29]  
Dowlati A, 2001, CLIN CANCER RES, V7, P2971
[30]   THE PREVENTION OF THYMIC LYMPHOMAS IN TRANSGENIC MICE BY HUMAN O6-ALKYLGUANINE-DNA ALKYLTRANSFERASE [J].
DUMENCO, LL ;
ALLAY, E ;
NORTON, K ;
GERSON, SL .
SCIENCE, 1993, 259 (5092) :219-222