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转化的啮齿动物细胞系对4-顺式羟基-L-脯氨酸的生长敏感性差异

Differential growth sensitivity to 4-cis-hydroxy-L-proline of transformed rodent cell lines.

作者信息

Ciardiello F, Sanfilippo B, Yanagihara K, Kim N, Tortora G, Bassin R H, Kidwell W R, Salomon D S

机构信息

Laboratory of Tumor Immunology and Biology, National Cancer Institute, Bethesda, Maryland 20892.

出版信息

Cancer Res. 1988 May 1;48(9):2483-91.

PMID:2833347
Abstract

The effect of 4-cis-hydroxy-L-proline (CHP), a proline analogue, on the anchorage-dependent and -independent growth of several transformed rodent cell lines was studied. Mouse NIH-3T3 fibroblasts transformed by a variety of different oncogenes (Ki-ras, mos, src, fms, fes, met, and trk) by a DNA tumor virus (SV40) or by a chemical carcinogen (N-methylnitrosourea) were all found to be more sensitive (50% inhibitory dose, 20 to 55 micrograms/ml) to the dose-dependent inhibitory effects of CHP on growth in monolayer culture than were NIH-3T3 cells (50% inhibitory dose, 120 micrograms/ml). CHP was generally found to be even more effective in inhibiting the growth of these transformed cells as colonies in soft agar than in monolayer cultures. In addition, rat embryo fibroblasts (CREF) and normal rat kidney fibroblasts (NRK) after transformation with a Ki-ras oncogene exhibit a similar increase in their sensitivity to CHP-induced growth inhibition. Treatment of NRK cells with transforming growth factor alpha (TGF-alpha) and beta (TGF-beta), which reversibly induces phenotypic transformation of these cells, increases their sensitivity to CHP to a level comparable with that observed in Ki-ras-transformed NRK cells (K-NRK). The growth inhibitory effects of CHP are reversible, since removal of CHP results in a normal resumption of cell growth. CHP uptake occurs primarily through the Na+- and energy-dependent neutral amino acid transport A system, which is 6- to 7-fold more elevated in K-NRK cells compared with NRK cells. Treatment of NRK cells with TGF-alpha and/or -beta increases the uptake of [3H]methylaminoisobutyric acid on the A system to a level that is similar to that found in K-NRK cells. The functions of the Na+/K+ and Na+/H+ exchange systems are apparently necessary for the enhanced A system activity, since ouabain and amiloride can inhibit the uptake of [3H]methylaminoisobutyric acid in K-NRK cells and in NRK cells treated with TGF-alpha and/or -beta. The activity of the A system is specifically increased in K-NRK and in TGF-alpha- and/or -beta-treated NRK cells, since the other two major neutral amino acid uptake systems, the ASC and the L systems, and the Ly+ system for basic amino acid uptake show no apparent changes in their activity in NRK cells after treatment with TGF-alpha and/or -beta or in these cells after transformation with the Ki-ras oncogene. These results suggest that the differential growth sensitivity to CHP of transformed rodent cells and of normal fibroblasts treated with TGF-alpha and/or -beta is due in part to an elevated uptake of this amino acid analogue on the neutral amino acid transport A system.

摘要

研究了脯氨酸类似物4-顺式羟基-L-脯氨酸(CHP)对几种转化的啮齿动物细胞系贴壁依赖性和非贴壁依赖性生长的影响。通过DNA肿瘤病毒(SV40)或化学致癌物(N-甲基亚硝基脲)由多种不同癌基因(Ki-ras、mos、src、fms、fes、met和trk)转化的小鼠NIH-3T3成纤维细胞,与NIH-3T3细胞(50%抑制剂量,120微克/毫升)相比,均发现对CHP在单层培养中生长的剂量依赖性抑制作用更敏感(50%抑制剂量,20至55微克/毫升)。一般发现,CHP在抑制这些转化细胞在软琼脂中形成集落的生长方面比在单层培养中更有效。此外,用Ki-ras癌基因转化后的大鼠胚胎成纤维细胞(CREF)和正常大鼠肾成纤维细胞(NRK)对CHP诱导的生长抑制的敏感性也有类似增加。用转化生长因子α(TGF-α)和β(TGF-β)处理NRK细胞,可使其发生可逆的表型转化,从而使其对CHP的敏感性增加到与Ki-ras转化的NRK细胞(K-NRK)中观察到的水平相当。CHP的生长抑制作用是可逆的,因为去除CHP后细胞生长可正常恢复。CHP的摄取主要通过Na+和能量依赖性中性氨基酸转运A系统进行,与NRK细胞相比,该系统在K-NRK细胞中的水平升高了6至7倍。用TGF-α和/或-β处理NRK细胞可使A系统上[3H]甲基氨基异丁酸的摄取增加到与K-NRK细胞中发现的水平相似。Na+/K+和Na+/H+交换系统的功能显然是增强A系统活性所必需的,因为哇巴因和氨氯吡脒可抑制K-NRK细胞以及用TGF-α和/或-β处理的NRK细胞中[3H]甲基氨基异丁酸的摄取。A系统的活性在K-NRK细胞以及用TGF-α和/或-β处理的NRK细胞中特异性增加,因为另外两个主要的中性氨基酸摄取系统,即ASC和L系统,以及碱性氨基酸摄取的Ly+系统,在用TGF-α和/或-β处理后的NRK细胞或用Ki-ras癌基因转化后的这些细胞中,其活性没有明显变化。这些结果表明,转化的啮齿动物细胞以及用TGF-α和/或-β处理的正常成纤维细胞对CHP的生长敏感性差异部分归因于该氨基酸类似物在中性氨基酸转运A系统上摄取的增加。

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