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在经鸟氨酸脱羧酶抑制药物筛选获得生长抑制抗性的啮齿动物细胞中,真核生物起始因子5A的hypusine修饰。

Hypusine modification in eukaryotic initiation factor 5A in rodent cells selected for resistance to growth inhibition by ornithine decarboxylase-inhibiting drugs.

作者信息

Tome M E, Gerner E W

机构信息

Department of Radiation Oncology, Arizona Health Sciences Center, University of Arizona, Tucson 85724, USA.

出版信息

Biochem J. 1996 Nov 15;320 ( Pt 1)(Pt 1):55-60. doi: 10.1042/bj3200055.

Abstract

Selection of HTC cells in drugs that inhibit ornithine decarboxylase (ODC) has produced two cell lines, HMOA and DH23A/b, that contain increased amounts of more stable ODC. In addition to alterations in ODC, these cells appear to produce modified eukaryotic initiation factor 5A (eIF-5A) at different rates, a reaction that both requires spermidine and is essential for proliferation. Alterations to the modification of eIF-5A by spermidine cannot be accounted for by changes in eIF-5A protein or modified eIF-5A turnover. Deoxyhypusine synthetase activity is similar in the parental and variant cell lines and is unaltered by growth into plateau phase or by spermidine depletion. The increased rate of eIF-5A modification in DH23A/b cells is due to an increased accumulation of the unmodified eIF-5A precursor. Increased precursor accumulation is not due to increased eIF-5A transcription, but rather it can be attributed to a metabolic accumulation caused by growth under conditions of chronically limiting spermidine. Selection using drugs that inhibit ODC apparently does not cause alterations in the eIF-5A modification pathway. These data support the hypothesis that one of the main effects of spermidine depletion is depletion of the modified eIF-5A pool, and that this is a critical factor in the cytostasis often observed after depletion of cellular polyamines.

摘要

在抑制鸟氨酸脱羧酶(ODC)的药物中筛选HTC细胞,产生了两个细胞系,即HMOA和DH23A/b,它们含有更多量的更稳定的ODC。除了ODC的改变外,这些细胞似乎以不同的速率产生修饰的真核起始因子5A(eIF-5A),这一反应既需要亚精胺,也是细胞增殖所必需的。亚精胺对eIF-5A修饰的改变不能用eIF-5A蛋白的变化或修饰的eIF-5A周转来解释。脱氧hypusine合成酶活性在亲本细胞系和变异细胞系中相似,并且在生长至平台期或亚精胺耗竭时未发生改变。DH23A/b细胞中eIF-5A修饰速率的增加是由于未修饰的eIF-5A前体积累增加所致。前体积累增加不是由于eIF-5A转录增加,而是可归因于在长期限制亚精胺的条件下生长引起的代谢积累。使用抑制ODC的药物进行筛选显然不会导致eIF-5A修饰途径的改变。这些数据支持这样的假设,即亚精胺耗竭的主要影响之一是修饰的eIF-5A池的耗竭,并且这是细胞多胺耗竭后经常观察到的细胞生长停滞的关键因素。

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