Basu H S, Marton L J, Pellarin M, Deen D F, McManis J S, Liu C Z, Bergeron R J, Feuerstein B G
Department of Neurological Surgery, University of California, San Francisco 94143.
Cancer Res. 1994 Dec 1;54(23):6210-4.
We designed three polyamine analogues, 1,14-diamino-N5-methyl-5,10- diazatetradecane (5me-4-4-4), 1,14-diamino-N5,N5-dimethyl-5,10-diazatetradecane (Q-Amm-4-4-4), and 1,14-bis-(ethylamino)-N5,N5-dimethyl-5,10-diazatetradecane (BE-Q-Amm-4-4-4), on the basis of computer modeling and physical-chemical studies of polyamine-DNA interactions. These analogues differ from natural polyamines and from one another in the charge distribution on their aliphatic backbone. We found that 10 microM 5me-4-4-4 did not inhibit growth and was not cytotoxic to the human brain tumor cell lines SF-767 and SF-126. The same concentrations of Q-Amm-4-4-4 and BE-Q-Amm-4-4-4 inhibited cell growth and killed more than 90% of each cell type on day 7 of the experiment. BE-Q-Amm-4-4-4 was slightly more toxic than Q-Amm-4-4-4 in both cell lines. All three agents either decreased or completely depleted intracellular putrescine and spermidine. Q-Amm-4-4-4 and BE-Q-Amm-4-4-4 each also lowered spermine. The fact that 5me-4-4-4 was nontoxic but that Q-Amm-4-4-4 was cytotoxic and inhibited growth suggests that the charge distribution along the surface of the aliphatic backbone of polyamines is important in determining growth inhibition and cytotoxicity.
基于对多胺与DNA相互作用的计算机建模和物理化学研究,我们设计了三种多胺类似物,即1,14 - 二氨基 - N5 - 甲基 - 5,10 - 二氮杂十四烷(5me - 4 - 4 - 4)、1,14 - 二氨基 - N5,N5 - 二甲基 - 5,10 - 二氮杂十四烷(Q - Amm - 4 - 4 - 4)和1,14 - 双(乙氨基)- N5,N5 - 二甲基 - 5,10 - 二氮杂十四烷(BE - Q - Amm - 4 - 4 - 4)。这些类似物与天然多胺不同,且彼此之间脂肪族主链上的电荷分布也不同。我们发现,10微摩尔的5me - 4 - 4 - 4不抑制生长,对人脑肿瘤细胞系SF - 767和SF - 126也无细胞毒性。相同浓度的Q - Amm - 4 - 4 - 4和BE - Q - Amm - 4 - 4 - 4在实验第7天抑制细胞生长,并杀死每种细胞类型中超过90%的细胞。在两种细胞系中,BE - Q - Amm - 4 - 4 - 4的毒性略高于Q - Amm - 4 - 4 - 4。所有三种试剂均使细胞内腐胺和亚精胺减少或完全耗尽。Q - Amm - 4 - 4 - 4和BE - Q - Amm - 4 - 4 - 4还各自降低了精胺水平。5me - 4 - 4 - 4无毒,而Q - Amm - 4 - 4 - 4具有细胞毒性并抑制生长,这一事实表明,多胺脂肪族主链表面的电荷分布对于确定生长抑制和细胞毒性很重要。