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通过核磁共振分析白细胞介素3对32D cl23细胞的代谢影响。

Metabolic effects of interleukin 3 on 32D cl23 cells analyzed by NMR.

作者信息

Hasthorpe S, Carver J A, Rees D, Campbell I D

机构信息

Peter MacCallum Cancer Institute, Melbourne, Australia.

出版信息

J Cell Physiol. 1987 Nov;133(2):351-7. doi: 10.1002/jcp.1041330220.

Abstract

31P NMR of living 32D cl23 cells and 1H NMR of cell extracts were used to study the metabolic effects of interleukin 3 (IL3). When IL3 was removed from 32D cl23 for 9-10 hours 31P spectra showed a decrease in sugar phosphate, gamma ATP/ADP, alpha ATP/ADP/NAD, and beta ATP resonances which declined progressively over a time period of up to 16 hours. By comparison, ATP measurements using the luciferin/luciferase method resulted in the decline of ATP levels from 12 hours in the absence of IL3. At this time, viability of the cells was unaffected. For 1H NMR experiments cells were grown in the presence and absence of IL3 for 4 and 24 hours, after which acid cell extracts were prepared. These spectra revealed a four-fold decrease in lactate 4 hours post-IL3 removal. Alanine levels were unchanged but glycine was elevated 1.5-fold whilst various other amino acids were elevated slightly. After 24 hours without IL3, only 22% of cells were viable which was reflected in a general decline of most resonance intensities. These findings suggest that IL3 exerts its effect primarily on glucose metabolism and has a delayed secondary effect on maintenance of ATP levels in the cell. We have demonstrated the applicability of high resolution 1H and 31P NMR to the study of cellular metabolism in hemopoietic cells.

摘要

利用活的32D cl23细胞的31P核磁共振以及细胞提取物的1H核磁共振来研究白细胞介素3(IL3)的代谢效应。当从32D cl23细胞中去除IL3 9至10小时后,31P谱显示磷酸糖、γ-ATP/ADP、α-ATP/ADP/NAD和β-ATP共振峰下降,在长达16小时的时间段内逐渐降低。相比之下,使用荧光素/荧光素酶方法进行的ATP测量结果显示,在没有IL3的情况下,12小时后ATP水平开始下降。此时,细胞的活力未受影响。对于1H核磁共振实验,细胞在有和没有IL3的情况下分别培养4小时和24小时,之后制备酸性细胞提取物。这些谱显示去除IL3 4小时后乳酸盐下降了四倍。丙氨酸水平未变,但甘氨酸升高了1.5倍,而其他各种氨基酸略有升高。在没有IL3的情况下培养24小时后,只有22%的细胞存活,这反映在大多数共振强度普遍下降。这些发现表明,IL3主要对葡萄糖代谢发挥作用,并对细胞中ATP水平的维持具有延迟的次要作用。我们已经证明了高分辨率1H和31P核磁共振在研究造血细胞的细胞代谢中的适用性。

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