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A chloroplast light-regulated oxidative sensor for moderate light intensity in Arabidopsis.

机译:叶绿体光调节氧化传感器,用于拟南芥中的中等光照强度。

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The transition from dark to light involves marked changes in the redox reactions of photosynthetic electron transport and in chloroplast stromal enzyme activity even under mild light and growth conditions. Thus, it is not surprising that redox regulation is used to dynamically adjust and coordinate the stromal and thylakoid compartments. While oxidation of regulatory proteins is necessary for the regulation, the identity and the mechanism of action of the oxidizing pathway are still unresolved. Here, we studied the oxidation of a thylakoid-associated atypical thioredoxin-type protein, ACHT1, in the Arabidopsis thaliana chloroplast. We found that after a brief period of net reduction in plants illuminated with moderate light intensity, a significant oxidation reaction of ACHT1 arises and counterbalances its reduction. Interestingly, ACHT1 oxidation is driven by 2-Cys peroxiredoxin (Prx), which in turn eliminates peroxides. The ACHT1 and 2-Cys Prx reaction characteristics in plants further indicated that ACHT1 oxidation is linked with changes in the photosynthetic production of peroxides. Our findings that plants with altered redox poise of the ACHT1 and 2-Cys Prx pathway show higher nonphotochemical quenching and lower photosynthetic electron transport infer a feedback regulatory role for this pathway.Digital Object Identifier http://dx.doi.org/10.1105/tpc.112.097139
机译:从黑暗到光明的转变涉及光合电子传输的氧化还原反应和叶绿体基质酶活性的显着变化,即使在温和的光照和生长条件下也是如此。因此,使用氧化还原调节来动态调节和协调基质和类囊体隔室也就不足为奇了。尽管调节蛋白的氧化对于调节是必需的,但是氧化途径的身份和作用机理仍未解决。在这里,我们研究了拟南芥叶绿体中类囊体相关的非典型硫氧还蛋白型蛋白ACHT1的氧化。我们发现,在以中等光照强度照射的植物中,经过短暂的净还原后,会出现ACHT1的显着氧化反应,并抵消了其还原。有趣的是,ACTH1的氧化是由2-Cys过氧化物酶(Prx)驱动的,而后者又消除了过氧化物。植物的ACHT1和2-Cys Prx反应特性进一步表明ACHT1的氧化与过氧化物的光合作用产生的变化有关。我们的发现表明,具有ACHT1和2-Cys Prx途径的氧化还原平衡改变的植物显示出更高的非光化学猝灭和更低的光合电子传递,从而推断出该途径的反馈调节作用。数字对象标识符http://dx.doi.org/10.1105/ tpc.112.097139

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