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Production of reactive oxygen species, alteration of cytosolic ascorbate peroxidase, and impairment of mitochondrial metabolism are early events in heat shock-induced programmed cell death in tobacco bright-yellow 2 cells

机译:活性氧物种的产生,胞质抗坏血酸过氧化物酶的改变以及线粒体代谢的损伤是热休克诱导的烟草亮黄色2细胞程序性细胞死亡的早期事件

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摘要

To gain some insight into the mechanisms by which plant cells die as a result of abiotic stress, we exposed tobacco (Nicotiana tabacum) Bright-Yellow 2 cells to heat shock and investigated cell survival as a function of time after heat shock induction. Heat treatment at 55degreesC triggered processes leading to programmed cell death (PCD) that was complete after 72 h. In the early phase, cells undergoing PCD showed an immediate burst in hydrogen peroxide (H2O2) and superoxide (O-2(.-)) anion production. Consistently, death was prevented by the antioxidants ascorbate (ASC) and superoxide dismutase (SOD). Actinomycin D and cycloheximide, inhibitors of transcription and translation, respectively, also prevented cell death, but with a lower efficiency. Induction of PCD resulted in gradual oxidation of endogenous ASC; this was accompanied by a decrease in both the amount and the specific activity of the cytosolic ASC peroxidase (cAPX). A reduction in cAPX gene expression was also found in the late PCD phase. Moreover, changes of cAPX kinetic properties were found in PCD cells. Production of ROS in PCD cells was accompanied by early inhibition of glucose (Glc) oxidation, with a strong impairment of mitochondrial function as shown by an increase in cellular NAD(P)H fluorescence, and by failure of mitochondria isolated from cells undergoing PCD to generate membrane potential and to oxidize succinate in a manner controlled by ADP. Thus, we propose that in the early phase of tobacco Bright-Yellow 2 cell PCD, ROS production occurs, perhaps because of damage of the cell antioxidant system, with impairment of the mitochondrial oxidative phosphorylation.
机译:为了深入了解植物细胞因非生物胁迫而死亡的机理,我们将烟草(Nicotiana tabacum)亮黄色2细胞暴露于热休克中,并研究了热休克诱导后细胞存活与时间的关系。 55摄氏度的热处理触发了导致程序性细胞死亡(PCD)的过程,该过程在72小时后完成。在早期阶段,经历PCD的细胞立即产生过氧化氢(H2O2)和超氧化物(O-2(.-))阴离子爆炸。一致地,抗氧化剂抗坏血酸(ASC)和超氧化物歧化酶(SOD)可以防止死亡。放线菌素D和环己酰亚胺分别是转录和翻译的抑制剂,它们也可以防止细胞死亡,但效率较低。 PCD的诱导导致内源性ASC逐渐氧化;这伴随着胞质ASC过氧化物酶(cAPX)的量和比活性的降低。在PCD晚期也发现cAPX基因表达降低。此外,在PCD细胞中发现了cAPX动力学特性的变化。 PCD细胞中ROS的产生伴随着葡萄糖(Glc)的早期抑制,线粒体功能的强烈损害,如细胞NAD(P)H荧光的增加,以及从经历PCD的细胞分离出的线粒体失败产生膜电位并以ADP控制的方式氧化琥珀酸酯。因此,我们提出在烟草亮黄色2细胞PCD的早期阶段,可能是由于细胞抗氧化剂系统的破坏以及线粒体氧化磷酸化的损害而产生了ROS的产生。

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