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腺苷酸激酶I在正常和代谢应激条件下不影响细胞生长特性。

Adenylate kinase I does not affect cellular growth characteristics under normal and metabolic stress conditions.

作者信息

de Bruin Wieke, Oerlemans Frank, Wieringa Bé

机构信息

Department of Cell Biology, NCMLS University Medical Center, University of Nijmegen, The Netherlands.

出版信息

Exp Cell Res. 2004 Jul 1;297(1):97-107. doi: 10.1016/j.yexcr.2004.02.025.

Abstract

Adenylate kinase (AK)-catalyzed phosphotransfer is essential in the maintenance of cellular energetic economy in cells of fully differentiated tissues with highly variable energy demand, such as muscle and brain. To investigate if AK isoenzymes have a comparable function in the energy-demand management of proliferating cells, AK1 and AK1beta were expressed in mouse neuroblastoma N2a cells and in human colon carcinoma SW480 cells. Glucose deprivation, galactose feeding, and metabolic inhibitor tests revealed a differential energy dependency for these two cell lines. N2a cells showed a faster proliferation rate and strongest coupling to mitochondrial activity, SW480 proliferation was more dependent on glycolysis. Despite these differences, ectopic expression of AK1 or AK1beta did not affect their growth characteristics under normal conditions. Also, no differential effects were seen under metabolic stress upon treatment with mitochondrial and glycolytic inhibitors in in vitro culture or in solid tumors grown in vivo. Although many intimate connections have been revealed between cell death and metabolism, our results suggest that AK1- or AK1beta-mediated high-energy phosphoryl transfer is not a modulating factor in the survival of tumor cells during episodes of metabolic crisis.

摘要

腺苷酸激酶(AK)催化的磷酸转移对于维持能量需求高度可变的完全分化组织(如肌肉和大脑)细胞中的细胞能量代谢至关重要。为了研究AK同工酶在增殖细胞的能量需求管理中是否具有类似功能,将AK1和AK1β在小鼠神经母细胞瘤N2a细胞和人结肠癌SW480细胞中进行表达。葡萄糖剥夺、半乳糖喂养和代谢抑制剂测试揭示了这两种细胞系对能量的不同依赖性。N2a细胞显示出更快的增殖速率以及与线粒体活性的最强耦合,SW480细胞的增殖更依赖糖酵解。尽管存在这些差异,但在正常条件下,AK1或AK1β的异位表达并未影响它们的生长特性。此外,在体外培养或体内生长的实体瘤中,用线粒体和糖酵解抑制剂处理后,在代谢应激下也未观察到差异效应。尽管已经揭示了细胞死亡与代谢之间存在许多密切联系,但我们的结果表明,在代谢危机期间,AK1或AK1β介导的高能磷酸转移不是肿瘤细胞存活的调节因子。

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