DNA CROSS-LINKING AND SEQUENCE SELECTIVITY OF AZIRIDINYLBENZOQUINONES - A UNIQUE REACTION AT 5'-GC-3' SEQUENCES WITH 2,5-DIAZIRIDINYL-1,4-BENZOQUINONE UPON REDUCTION

被引:45
作者
HARTLEY, JA
BERARDINI, M
PONTI, M
GIBSON, NW
THOMPSON, AS
THURSTON, DE
HOEY, BM
BUTLER, J
机构
[1] UNIV SO CALIF,SCH PHARM,DEPT PHARMACEUT SCI,LOS ANGELES,CA 90033
[2] UNIV SO CALIF,CTR COMPREHENS CANC,LOS ANGELES,CA 90033
[3] PORTSMOUTH POLYTECH,SCH PHARM & BIOMED SCI,DIV MED CHEM,PORTSMOUTH PO1 2DZ,HANTS,ENGLAND
[4] CHRISTIE HOSP & HOLT RADIUM INST,PATERSON INST CANC RES,CRC,DEPT BIOPHYS CHEM,MANCHESTER M20 9BX,LANCS,ENGLAND
关键词
D O I
10.1021/bi00114a016
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Several bifunctional alkylating agents of the aziridinylbenzoquinone class have been evaluated as potential antitumor agents. 3,6-Bis[(2-hydroxyethyl)amino]-2,5-diaziridinyl-1,4-benzoquinone (BZQ), 2,5-diaziridinyl-1,4-benzoquinone (DZQ), 3,6-bis(carboxyamino)-2,5-diaziridinyl-1,4-benzoquinone (AZQ), and six analogues of AZQ have been studied for their ability to induce DNA interstrand cross-linking, as measured by an agarose gel technique, and to determine whether they react with DNA in a sequence-selective manner, as determined by a modified DNA sequencing technique. At an equimolar concentration (10-mu-M), only DZQ and BZQ showed any detectable cross-linking at pH 7 without reduction. Cross-linking was enhanced in both cases at low pH (4). Reduction by ascorbic acid at both pH's increased the cross-linking, which was particularly striking in the case of DZQ. In contrast, AZQ and its analogues only produced a significant level of cross-linking under both low-pH and reducing conditions, the extent of cross-linking decreasing as the size of the alkyl end group increased. The compounds reacted with all guanine-N7 positions in DNA with a sequence selectivity similar to other chemotherapeutic alkylating agents, such as the nitrogen mustards, although some small differences were observed with BZQ. Nonreduced DZQ showed a qualitatively similar pattern of reactivity to the other compounds, but on reduction (at pH 4 or 7) was found to react almost exclusively with 5'-GC-3' sequences, and in particular, at 5'-TGC-3' sites. A model to explain this unique reaction is proposed.
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页码:11719 / 11724
页数:6
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