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谷氨酸的摄取而非谷氨酰胺合成酶,调节哺乳动物细胞对无谷氨酰胺培养基的适应。

Uptake of glutamate, not glutamine synthetase, regulates adaptation of mammalian cells to glutamine-free medium.

作者信息

McDermott R H, Butler M

机构信息

Department of Biological Sciences, Manchester Polytechnic, UK.

出版信息

J Cell Sci. 1993 Jan;104 ( Pt 1):51-8. doi: 10.1242/jcs.104.1.51.

Abstract

Two cell lines (McCoy and MDCK) were studied in an attempt to understand the metabolic changes associated with adaptation to glutamine-free medium (GMEM + gmate). McCoy cells assumed normal growth rates after 2-3 passages in this medium whereas MDCK cells showed no growth in GMEM + gmate. The glutamine synthetase (GS) activity of both cell lines was elevated (up to x 9) as glutamine was depleted from normal media (GMEM + gmine). The high activity of GS was maintained during McCoy cell growth in GMEM + gmate. However, there was no apparent significant difference between the two cell lines in the pattern of changes of GS activity in response to glutamine. The cellular uptake rates of glutamine and glutamate from the medium differed significantly between the two cell lines. During the adaptation of McCoy cells to GMEM + gmate, the rate of glutamate uptake doubled to a value of 0.54 nmol/min per mg cell protein whereas the maximum value for MDCK cells was considerably lower (0.04 nmol/min per mg cell protein). We propose that the difference in intrinsic ability for glutamate transport accounts for the difference in growth response between the two cell lines in the glutamine-free medium.

摘要

为了了解与适应无谷氨酰胺培养基(GMEM + gmate)相关的代谢变化,对两种细胞系(McCoy和MDCK)进行了研究。McCoy细胞在该培养基中传代2 - 3次后生长速率恢复正常,而MDCK细胞在GMEM + gmate中未生长。随着谷氨酰胺从正常培养基(GMEM + gmine)中耗尽,两种细胞系的谷氨酰胺合成酶(GS)活性均升高(高达9倍)。在GMEM + gmate中McCoy细胞生长期间,GS保持高活性。然而,两种细胞系在GS活性响应谷氨酰胺变化的模式上没有明显显著差异。两种细胞系从培养基中摄取谷氨酰胺和谷氨酸的速率存在显著差异。在McCoy细胞适应GMEM + gmate的过程中,谷氨酸摄取速率翻倍至0.54 nmol/(min·mg细胞蛋白),而MDCK细胞的最大值则低得多(0.04 nmol/(min·mg细胞蛋白))。我们认为,谷氨酸转运内在能力的差异解释了两种细胞系在无谷氨酰胺培养基中生长反应的差异。

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