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α-甲基多胺:代谢稳定的亚精胺和精胺模拟物,能够支持多胺缺乏细胞的生长。

alpha-Methyl polyamines: metabolically stable spermidine and spermine mimics capable of supporting growth in cells depleted of polyamines.

作者信息

Lakanen J R, Coward J K, Pegg A E

机构信息

Department of Chemistry, University of Michigan, Ann Arbor 48109-1055.

出版信息

J Med Chem. 1992 Feb 21;35(4):724-34. doi: 10.1021/jm00082a013.

Abstract

In order to assess the tolerance of the target enzyme spermine synthase for alpha-substituents on the aminopropyl moiety of the substrate spermidine, 1-methylspermidine (MeSpd, 2) was synthesized. It was determined that MeSpd is a poor substrate for spermine synthase and is not a substrate for spermidine N1-acetyltransferase, suggesting that alpha-methylated polyamines might be metabolically stable and therefore useful tools for studying polyamine effects in intact cells. On the basis of initial cellular results with 2, 1-methylspermine (MeSpm, 3) and 1,12-dimethylspermine (Me2Spm, 4) were also synthesized. When added to cells (L1210, SV-3T3, or HT29) depleted of both putrescine and spermidine by prior treatment with alpha-(difluoromethyl)ornithine (DFMO), these alpha-methylated polyamines were able to restore cell growth to that observed in the absence of DFMO. In accord with the enzyme data noted above, metabolic studies indicated a slow conversion of 2 to 3, but no metabolism of 4 in these cells. It was concluded from these results that the alpha-methylated polyamines are able to substitute for the natural polyamines spermidine and spermine in critical biochemical processes which involve polyamines for continued cell growth. In accord with the hypothesis, preliminary data indicate that MeSpd and Me2Spm are as effective as spermidine and spermine, respectively, in promoting the conversion of B-DNA to Z-DNA.

摘要

为了评估目标酶精胺合酶对底物亚精胺氨丙基部分α-取代基的耐受性,合成了1-甲基亚精胺(MeSpd,2)。已确定MeSpd是精胺合酶的不良底物,且不是亚精胺N1-乙酰转移酶的底物,这表明α-甲基化多胺可能在代谢上稳定,因此是研究完整细胞中多胺作用的有用工具。基于对2的初步细胞实验结果,还合成了1-甲基精胺(MeSpm,3)和1,12-二甲基精胺(Me2Spm,4)。当将这些α-甲基化多胺添加到预先用α-(二氟甲基)鸟氨酸(DFMO)处理而耗尽腐胺和亚精胺的细胞(L1210、SV-3T3或HT29)中时,它们能够将细胞生长恢复到未使用DFMO时观察到的水平。与上述酶数据一致,代谢研究表明在这些细胞中2缓慢转化为3,但4没有代谢。从这些结果得出结论,α-甲基化多胺能够在涉及多胺以维持细胞持续生长的关键生化过程中替代天然多胺亚精胺和精胺。与该假设一致,初步数据表明MeSpd和Me2Spm分别在促进B-DNA向Z-DNA转化方面与亚精胺和精胺一样有效。

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