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Light modulation of Rubisco in Arabidopsis requires a capacity for redox regulation of the larger Rubisco activase isoform

机译:拟南芥中Rubisco的光调制需要具有较大的Rubisco活化酶同工型的氧化还原调节能力。

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摘要

The light activation of ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) in vivo requires the presence of Rubisco activase, a nuclear-encoded chloroplast protein that consists of two isoforms arising from alternative splicing in most plants. We examined the function of each isoform by characterizing Rubisco activation in transgenic Arabidopsis plants that express only one or both isoforms, as compared with the wild type. In plants expressing only the shorter isoform, Rubisco activity was as high as in the wild type under saturating light, but the activity was not down-regulated at intensities limiting for photosynthesis. In contrast, in plants expressing only the longer isoform, Rubisco activity was down-regulated at limiting light, but the activity was slightly lower and increased much more slowly at saturating light intensities as compared with the wild type. Light regulation of Rubisco similar to that in the wild-type plants was observed in the progeny of a genetic cross of these two transformants in which both isoforms were again present. When the capacity to redox regulate the activity of the larger activase isoform was eliminated by replacement of the critical cysteine residues in the carboxyl-terminal extension unique to this isoform, Rubisco activity in saturating light was similar to the wild type, but the ability of the larger isoform to down-regulate Rubisco activity at limiting light intensities in transgenic plants was almost abolished. These results indicate that the light modulation of Rubisco under limiting light is mainly due to the ability to regulate the activity of Rubisco activase by redox changes in the stroma.
机译:体内的核糖1,5-双磷酸羧化酶/加氧酶(Rubisco)的光活化需要Rubisco活化酶的存在,Rubisco活化酶是一种核编码的叶绿体蛋白,由大多数植物中的可变剪接产生的两种同工型组成。我们通过表征与野生型相比仅表达一种或两种同工型的转基因拟南芥植物中的Rubisco活化来检验每种同工型的功能。在仅表达较短同工型的植物中,在饱和光下,Rubisco活性与野生型一样高,但是在限制光合作用的强度下,活性没有下调。相反,在仅表达更长同工型的植物中,Rubisco活性在极限光照下被下调,但与野生型相比,在饱和光照强度下,活性稍低,而增长则慢得多。在这两个转化子的遗传杂交后代中观察到与野生型植物相似的Rubisco的光调节,其中两个同种型都再次存在。当通过替换该异构体唯一的羧基末端延伸区中的关键半胱氨酸残基消除了氧化还原调节较大活化酶异构体活性的能力时,Rubisco在饱和光下的活性与野生型相似,但在限制转基因植物中在限制光照强度下大幅度下调Rubisco活性的较大同工型几乎被废除了。这些结果表明,Rubisco在极限光下的光调制主要是由于通过基质中氧化还原变化来调节Rubisco活化酶活性的能力。

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