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过氧化氢信号在莱茵衣藻中短暂积累的原因是过氧化氢酶活性下调。

Down-regulation of catalase activity allows transient accumulation of a hydrogen peroxide signal in Chlamydomonas reinhardtii.

机构信息

Commissariat à l'Energie Atomique et aux Energies Alternatives (CEA) Saclay, Institut de Biologie et Technologie de Saclay, Centre National de la Recherche Scientifique, UMR 8221, 91191, Gif-sur-Yvette Cedex, France.

出版信息

Plant Cell Environ. 2013 Jun;36(6):1204-13. doi: 10.1111/pce.12053. Epub 2013 Jan 13.

Abstract

In photosynthetic organisms, excess light is a stress that induces production of reactive oxygen species inside the chloroplasts. As a response, the capacity of antioxidative defence mechanisms increases. However, when cells of Chlamydomonas reinhardtii were shifted from dark to high light, a reversible partial inactivation of catalase activity was observed, which correlated with a transient increase in the level of H2 O2 in the 10 μm range. This concentration range seems to be necessary to activate H2 O2 -dependent signalling pathways stimulating the expression of H2 O2 responsive genes, such as the heat shock protein HSP22C. Catalase knock-down mutants had lost the transient accumulation of H2 O2 , suggesting that a decrease in catalase activity was the key element for establishing a transient H2 O2 burst. Catalase was inactivated by a one-electron event consistent with the reduction of a single cysteine. We propose that under high light intensity, the redox state of the photosynthetic electron transport chain is sensed and transmitted to the cytosol to regulate the catalase activity. This allows a transient accumulation of H2 O2 , inducing a signalling event that is transmitted to the nucleus to modulate the expression of chloroplast-directed protection enzymes.

摘要

在光合作用生物中,过量的光会对叶绿体造成应激,导致活性氧的产生。作为一种应对机制,抗氧化防御机制的能力会增强。然而,当莱茵衣藻的细胞从黑暗环境转移到高光环境时,观察到过氧化氢酶活性的可逆部分失活,这与 10μm 范围内 H2O2 水平的短暂增加相关。这个浓度范围似乎是必需的,以激活 H2O2 依赖的信号通路,刺激 H2O2 响应基因的表达,如热休克蛋白 HSP22C。过氧化氢酶敲低突变体失去了 H2O2 的短暂积累,表明过氧化氢酶活性的降低是建立短暂 H2O2 爆发的关键因素。过氧化氢酶的失活是由一个电子事件引起的,与单个半胱氨酸的还原一致。我们提出,在高光强下,光合作用电子传递链的氧化还原状态被感知,并传递到细胞质中,以调节过氧化氢酶的活性。这允许 H2O2 的短暂积累,诱导信号事件传递到核内,以调节叶绿体定向保护酶的表达。

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