Attene-Ramos Matias S, Kitiphongspattana Kajorn, Ishii-Schrade Katrin, Gaskins H Rex
Department of Animal Sciences, University of Illinois, 1207 W. Gregory Drive, Urbana, IL 61801, USA.
Am J Physiol Cell Physiol. 2005 Nov;289(5):C1220-8. doi: 10.1152/ajpcell.00164.2005. Epub 2005 Jun 15.
Changes in intracellular redox couples and redox reactive molecules have been implicated in the regulation of a variety of cellular processes, including cell proliferation and growth arrest by contact inhibition. However, the magnitude, direction, and temporal relationship of redox changes to cellular responses are incompletely defined. The present work sought to characterize redox and metabolic changes associated with proliferative stages to contact inhibition of growth in rat IEC-6 intestinal epithelial cells. From the first day of culture until 1 day before confluence, an increase in GSH concentrations and a significant reduction in the redox potential of the GSSG/2GSH couple were observed. These changes were accompanied by a decrease in relative reactive oxygen species (ROS) and nitric oxide (NO) concentrations and oxidation of the redox potential of the NADP(+)/reduced NADP and NAD(+)/NADH couples. Postconfluent cells exhibited a significant decrease in GSH concentrations and a significant oxidation of the GSSG/2GSH couple. When cell proliferation decreased, relative ROS concentrations increased (P < 0.01), whereas NO concentrations remained unchanged, and the NAD(+)/NADH couple became more reduced. Together, these data indicate that the redox potential of distinct couples varies differentially in both magnitude and direction during successive stages of IEC-6 growth. This finding points out the difficulty of defining intracellular redox status at particular stages of cell growth by examining only one redox species. In addition, the data provide a numerical framework for future research of regulatory mechanisms governed by distinct intracellular redox couples.
细胞内氧化还原对和氧化还原反应性分子的变化与多种细胞过程的调节有关,包括通过接触抑制实现的细胞增殖和生长停滞。然而,氧化还原变化与细胞反应的幅度、方向和时间关系尚未完全明确。本研究旨在表征大鼠IEC-6肠上皮细胞从增殖阶段到接触抑制生长过程中相关的氧化还原和代谢变化。从培养的第一天到汇合前1天,观察到谷胱甘肽(GSH)浓度增加,GSSG/2GSH对的氧化还原电位显著降低。这些变化伴随着相对活性氧(ROS)和一氧化氮(NO)浓度的降低以及NADP(+)/还原型NADP和NAD(+)/NADH对氧化还原电位的氧化。汇合后细胞的GSH浓度显著降低,GSSG/2GSH对发生显著氧化。当细胞增殖减少时,相对ROS浓度增加(P < 0.01),而NO浓度保持不变,NAD(+)/NADH对变得更加还原。总之,这些数据表明,在IEC-6生长的连续阶段,不同对的氧化还原电位在幅度和方向上存在差异变化。这一发现指出了仅通过检测一种氧化还原物质来定义细胞生长特定阶段细胞内氧化还原状态的困难。此外,这些数据为未来研究由不同细胞内氧化还原对控制的调节机制提供了一个数值框架。