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亚精胺和亚精胺类似物N1N8-双(乙基)亚精胺对鸟氨酸脱羧酶活性的调节

Regulation of ornithine decarboxylase activity by spermidine and the spermidine analogue N1N8-bis(ethyl)spermidine.

作者信息

Porter C W, Berger F G, Pegg A E, Ganis B, Bergeron R J

出版信息

Biochem J. 1987 Mar 1;242(2):433-40. doi: 10.1042/bj2420433.

Abstract

Polyamine biosynthesis in intact cells can be exquisitely controlled with exogenous polyamines through the regulation of rate-limiting biosynthetic enzymes, particularly ornithine decarboxylase (ODC). In an attempt to exploit this phenomenon as an antiproliferative strategy, certain polyamine analogues have been identified [Porter, Cavanaugh, Stolowich, Ganis, Kelly & Bergeron (1985) Cancer Res. 45, 2050-2057] which lower ODC activity in intact cells, have no direct inhibitory effects on ODC, are incapable of substituting for spermidine (SPD) in supporting cell growth, and are growth-inhibitory at micromolar concentrations. In the present study, the most effective of these analogues, N1N8-bis(ethyl)SPD (BES), is compared with SPD in its ability to regulate ODC activity in intact L1210 cells and in the mechanism(s) by which this is accomplished. With respect to time and dose-dependence of ODC suppression, both polyamines closely paralleled one another in their response curves, although BES was slightly less effective than SPD. Conditions of minimal treatment leading to near-maximal ODC suppression (70-80%) were determined and found to be 3 microM for 2 h with either SPD or BES. After such treatment, ODC activity was fully recovered within 2-4 h when cells were re-seeded in drug-free media. By assessing BES or [3H]SPD concentrations in treated and recovered cells, it was possible to deduce that an intracellular accumulation of BES or SPD equivalent to less than 6.5% of the combined cellular polyamine pool was sufficient to invoke ODC regulatory mechanisms. Decreases in ODC activity after BES or SPD treatment were closely paralleled by concomitant decreases in ODC protein. Since cellular ODC mRNA was not similarly decreased by either BES or SPD, it was concluded that translational and/or post-translational mechanisms, such as increased degradation of ODC protein or decreased translation of ODC mRNA, were probably responsible for regulation of enzyme activity. Experimental evidence indicated that neither of these mechanisms seemed to be mediated by cyclic AMP or ODC-antizyme induction. On the basis of the consistent similarities between BES and SPD in all parameters studied, it is concluded that the analogue most probably acts by the same mechanisms as SPD in regulating polyamine biosynthesis.

摘要

完整细胞中的多胺生物合成可以通过外源性多胺,通过调节限速生物合成酶,特别是鸟氨酸脱羧酶(ODC)来精确控制。为了利用这一现象作为抗增殖策略,已鉴定出某些多胺类似物[波特、卡瓦诺、斯托洛维奇、加尼斯、凯利和伯杰龙(1985年)《癌症研究》45,2050 - 2057],这些类似物可降低完整细胞中的ODC活性,对ODC无直接抑制作用,不能替代亚精胺(SPD)支持细胞生长,并且在微摩尔浓度下具有生长抑制作用。在本研究中,将这些类似物中最有效的N1N8 - 双(乙基)SPD(BES)与SPD在完整L1210细胞中调节ODC活性的能力及其实现机制方面进行了比较。关于ODC抑制的时间和剂量依赖性,两种多胺在其反应曲线上彼此非常相似,尽管BES的效果略逊于SPD。确定了导致接近最大ODC抑制(70 - 80%)的最小处理条件,发现使用SPD或BES时均为3 microM处理2小时。经过这样的处理后,当细胞重新接种到无药物培养基中时,ODC活性在2 - 4小时内完全恢复。通过评估处理和恢复细胞中的BES或[3H]SPD浓度,可以推断出细胞内BES或SPD的积累量相当于细胞内多胺总量的不到6.5%就足以引发ODC调节机制。BES或SPD处理后ODC活性的降低与ODC蛋白的相应降低密切平行。由于BES或SPD均未使细胞ODC mRNA同样降低,因此得出结论,翻译和/或翻译后机制,如ODC蛋白降解增加或ODC mRNA翻译减少,可能是酶活性调节的原因。实验证据表明,这些机制似乎均不是由环磷酸腺苷或ODC - 抗酶诱导介导的。基于在所有研究参数中BES和SPD之间一致的相似性,得出结论,该类似物在调节多胺生物合成中最可能通过与SPD相同的机制起作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffa2/1147723/5f1c71d1a3b3/biochemj00260-0127-a.jpg

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