Univ Paris Diderot, Sorbonne Paris Cité, Institut des Energies de Demain (IED), Paris, France.
LEM, Institut de Biologie des Plantes, Bât 630, 91405, Orsay, France.
New Phytol. 2013 Jun;198(4):1039-1048. doi: 10.1111/nph.12226. Epub 2013 Mar 20.
· Ion fluxes are ubiquitous processes in the plant and animal kingdoms, controlled by fine-tuned regulations of ion channel activity. Yet the mechanism that cells employ to achieve the modification of ion homeostasis at the molecular level still remains unclear. This is especially true when it comes to the mechanisms that lead to cell death. · In this study, Arabidopsis thaliana cells were exposed to ozone (O₃). Ion flux variations were analyzed by electrophysiological measurements and their transcriptional regulation by RT-PCR. Reactive oxygen species (ROS) generation was quantified by luminescence techniques and caspase-like activities were investigated by laser confocal microscopy. · We highlighted the delayed activation of K(+) outward-rectifying currents after an O₃ -induced oxidative stress leading to programmed cell death (PCD). Caspase-like activities are detected under O₃ exposure and could be decreased by K(+) channel blocker. Molecular experiments revealed that the sustained activation of K(+) outward current could be the result of an unexpected O₂ ·⁻ post-transcriptional regulation of the guard cell outward-rectifying K(+) (GORK) channels. · This consists of a likely new mode of regulating the processing of the GORK mRNA, in a ROS-dependent manner, to allow sustained K(+) effluxes during PCD. These data provide new mechanistic insights into K(+) channel regulation during an oxidative stress response.
· 在植物界和动物界中,离子通量是普遍存在的过程,其受到离子通道活性的精细调控。然而,细胞在分子水平上实现离子动态平衡修饰的机制仍然不清楚。当涉及到导致细胞死亡的机制时尤其如此。· 在这项研究中,拟南芥细胞暴露在臭氧 (O₃) 中。通过电生理测量分析离子通量变化,并通过 RT-PCR 分析其转录调控。通过发光技术定量测定活性氧 (ROS) 的产生,并通过激光共聚焦显微镜研究半胱天冬酶样活性。· 我们强调了在臭氧诱导的氧化应激后,K(+)外向整流电流的延迟激活导致程序性细胞死亡 (PCD)。在臭氧暴露下检测到半胱天冬酶样活性,并且可以通过 K(+)通道阻断剂降低其活性。分子实验表明,K(+)外向电流的持续激活可能是由于 guard cell outward-rectifying K(+) (GORK) 通道的 O₂ ·⁻ 转录后调控的意外结果。· 这包括一种可能的新方式,以依赖于 ROS 的方式调节 GORK mRNA 的加工,从而在 PCD 期间允许持续的 K(+)外排。这些数据为氧化应激反应期间 K(+)通道调节提供了新的机制见解。