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丝裂霉素C的还原激活

Reductive activation of mitomycin C.

作者信息

Hoey B M, Butler J, Swallow A J

机构信息

Department of Biophysical Chemistry, Paterson Institute for Cancer Research, Christie Hospital, Manchester, England.

出版信息

Biochemistry. 1988 Apr 5;27(7):2608-14. doi: 10.1021/bi00407a051.

Abstract

Mitomycin C, an antitumor antibiotic, is known to require reductive activation in order to function as an alkylating agent. In this work reduction has been carried out by using radiolytically produced formate radicals that reduce mitomycin C to its semiquinone in a clean rapid one-electron reaction. The ultimate products of the reduction are cis- and trans-2,7-diamino-1-hydroxymitosene (B1 and B2) and 2,7-diaminomitosene (C). The yields of these compounds were found to be the same when the rate of reduction was varied by 11 orders of magnitude. At pH 7, one mitosene molecule is formed for every two formate radicals, while at pH 9.1, about eight mitosene molecules are formed per formate radical. The ratio of (B1 + B2)/C is less than 0.4 at pH 5.7, 1.0 at pH 7, and greater than 3.5 at pH 9.1. Observations have been made of changes in optical absorption due to the formation of the semiquinone and hydroquinone of both mitomycin C itself and 2,7-diamino-1-hydroxymitosene (B). The direct conversion of the semiquinone form of mitomycin C into the semiquinone of B proceeds slowly, if at all. The semiquinone form of B will rapidly reduce mitomycin C (k = 7.2 X 10(8) M-1 s-1). The hydroquinone of mitomycin C undergoes changes resulting in the formation of B and C. The yields of B and C depend on pH.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

丝裂霉素C是一种抗肿瘤抗生素,已知其需经还原激活才能作为烷基化剂发挥作用。在本研究中,通过使用辐射分解产生的甲酸根自由基进行还原反应,该自由基能在一个干净快速的单电子反应中将丝裂霉素C还原为其半醌形式。还原的最终产物是顺式和反式2,7 - 二氨基 - 1 - 羟基丝裂蒽醌(B1和B2)以及2,7 - 二氨基丝裂蒽醌(C)。当还原速率变化11个数量级时,发现这些化合物的产率相同。在pH 7时,每两个甲酸根自由基形成一个丝裂蒽醌分子,而在pH 9.1时,每个甲酸根自由基约形成八个丝裂蒽醌分子。在pH 5.7时,(B1 + B2)/C的比例小于0.4,在pH 7时为1.0,在pH 9.1时大于3.5。已观察到由于丝裂霉素C本身以及2,7 - 二氨基 - 1 - 羟基丝裂蒽醌(B)的半醌和对苯二酚的形成而导致的光吸收变化。丝裂霉素C的半醌形式直接转化为B的半醌形式即使发生也进行得很慢。B的半醌形式会迅速还原丝裂霉素C(k = 7.2×10⁸ M⁻¹ s⁻¹)。丝裂霉素C的对苯二酚发生变化,导致形成B和C。B和C的产率取决于pH值。(摘要截短于250字)

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