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关于N1N12 - 双(乙基)精胺抑制哺乳动物细胞生长机制的研究。

Investigations of the mechanism by which mammalian cell growth is inhibited by N1N12-bis(ethyl)spermine.

作者信息

Albanese L, Bergeron R J, Pegg A E

机构信息

Department of Cell and Molecular Physiology and Pharmacology, M.S. Hershey Medical Center, Hershey, PA 17033.

出版信息

Biochem J. 1993 Apr 1;291 ( Pt 1)(Pt 1):131-7. doi: 10.1042/bj2910131.

Abstract

N1N12-Bis(ethyl)spermine (BESM) and related compounds are powerful inhibitors of cell growth that may have potential as anti-neoplastic agents [Bergeron, Neims, McManis, Hawthorne, Vinson, Bortell and Ingeno (1988) J. Med. Chem. 31, 1183-1190]. The mechanism by which these compounds bring about their effects was investigated by using variant cell lines in which processes thought to be altered by these agents are perturbed. Comparisons between the response of these cells and of their parental equivalents to BESM, N1N11-bis(ethyl)norspermine, N1N14-bis(ethyl)homospermine and N1N8-bis(ethyl)spermidine were then made. It was found that D-R cells, an L1210-derived line that over-expresses ornithine decarboxylase, were not resistant to these compounds. This indicates that the decrease in ornithine decarboxylase is not critical for the action of the compounds on cell growth. Furthermore, although polyamine levels were decreased in the D-R cells, the content was not totally depleted, indicating that such depletion is also not essential for the anti-proliferative effect. Two cell lines lacking mitochondrial DNA (human 143B206 cells and chicken DU3 cells) did not differ in sensitivity to BESM from their parental 143BTK- and DU24 cells. Furthermore, the inhibition of respiration in L1210 cells in response to BESM developed more slowly than the inhibition of growth. Thus it appears that the inhibitions of mitochondrial DNA synthesis and of mitochondrial respiration are also not primary factors in the anti-proliferative effects of these polyamine analogues. The inhibition of growth did, however, correlate with the intracellular accumulation of the analogues. It appears that the bis(ethyl)polyamine derivatives act by binding to intracellular target molecules and preventing macromolecular synthesis. The decline in normal polyamines may facilitate such binding, but is not essential for growth arrest.

摘要

N1N12 - 双(乙基)精胺(BESM)及相关化合物是细胞生长的强效抑制剂,可能具有作为抗肿瘤药物的潜力[伯杰龙、内姆斯、麦克马尼斯、霍桑、文森、博特尔和英格诺(1988年)《药物化学杂志》31卷,1183 - 1190页]。通过使用变异细胞系来研究这些化合物产生作用的机制,在这些变异细胞系中,被认为会被这些药物改变的过程受到了干扰。然后对这些细胞及其亲本细胞对BESM、N1N11 - 双(乙基)去甲精胺、N1N14 - 双(乙基)高精胺和N1N8 - 双(乙基)亚精胺的反应进行了比较。发现D - R细胞,一种源自L1210且过表达鸟氨酸脱羧酶的细胞系,对这些化合物并不耐药。这表明鸟氨酸脱羧酶的减少对于这些化合物对细胞生长的作用并非关键因素。此外,尽管D - R细胞中的多胺水平有所降低,但其含量并未完全耗尽,表示这种耗尽对于抗增殖作用也并非必不可少。两个缺乏线粒体DNA的细胞系(人143B206细胞和鸡DU3细胞)对BESM的敏感性与其亲本143BTK - 和DU24细胞并无差异。此外,L1210细胞对BESM的呼吸抑制比对生长的抑制发展得更慢。因此,线粒体DNA合成和线粒体呼吸的抑制似乎也不是这些多胺类似物抗增殖作用的主要因素。然而,生长抑制确实与类似物在细胞内的积累相关。看来双(乙基)多胺衍生物通过与细胞内靶分子结合并阻止大分子合成来发挥作用。正常多胺的减少可能会促进这种结合,但对于生长停滞并非必不可少。

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Polyamine metabolism and function.多胺代谢与功能。
Am J Physiol. 1982 Nov;243(5):C212-21. doi: 10.1152/ajpcell.1982.243.5.C212.
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Synthetic polyamine analogues as antineoplastics.合成多胺类似物作为抗肿瘤药。
J Med Chem. 1988 Jun;31(6):1183-90. doi: 10.1021/jm00401a019.

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