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Mechanism of light regulation of Rubisco: A specific role for the larger Rubisco activase isoform involving reductive activation by thioredoxin-f

机译:Rubisco的光调节机制:较大的Rubisco活化酶同工型的特定作用,涉及硫氧还蛋白-f的还原活化

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摘要

Rubisco activase is a nuclear-encoded chloroplast protein that is required for the light activation of ribulose 1,5-bisphosphate carboxylase/oxygenase (Rubisco) in vivo. In most plants examined to date, there are two isoforms of Rubisco activase arising from alternative splicing that differ only at the carboxyl terminus. Here we demonstrate with recombinant proteins that in Arabidopsis the larger isoform has a unique role in the regulation of Rubisco activity. At physiological ratios of ADP/ATP, the 46-kDa isoform has minimal ATP hydrolysis and Rubisco activation activity in comparison with the 43-kDa isoform. Analysis of a series of carboxyl-terminal deletion and Ala substitution mutants of the 46-kDa isoform revealed that the presence of Cys residues at positions 411 and 392 were essential to preserve a low ATP hydrolysis and Rubisco activation activity in the presence of ADP. Consequently, incubation of the 46-kDa isoform with DTT and thioredoxin-f increased both activities, whereas incubations with DTT alone or with thioredoxin-m were ineffective. Thioredoxin-f and DTT had no effect on the 43-kDa isoform. However, premixing both isoforms before conducting a reduction and oxidation cycle demonstrated that the activity of both isoforms could be regulated. Reduction and oxidation also modulated the activity of native activase proteins isolated from either Arabidopsis or spinach, but not tobacco, which only has the smaller isoform. These findings suggest that in plants containing both isoforms, Rubisco activase regulates the activity of Rubisco in response to light-induced changes in both the ADP/ATP ratio and the redox potential via thioredoxin-f.
机译:Rubisco激活酶是一种核编码的叶绿体蛋白,在体内是光激活核糖1,5-双磷酸羧化酶/加氧酶(Rubisco)所必需的。迄今为止,在大多数检查过的植物中,Rubisco活化酶的两种同工型是由选择性剪接产生的,仅在羧基末端不同。在这里,我们用重组蛋白证明,在拟南芥中,较大的同工型在Rubisco活性的调节中具有独特的作用。在ADP / ATP的生理比例下,与43-kDa的同工型相比,46-kDa的同工型具有最小的ATP水解和Rubisco活化活性。对一系列46-kDa亚型的羧基末端缺失和Ala取代突变体的分析表明,在ADP存在下,在411和392位的Cys残基的存在对于保持低ATP水解和Rubisco活化活性至关重要。因此,与DTT和硫氧还蛋白-f一起孵育46 kDa异构体会增加两种活性,而仅与DTT或与硫氧还蛋白-m一起孵育是无效的。硫氧还蛋白-f和DTT对43-kDa亚型没有影响。然而,在进行还原和氧化循环之前将两种同工型预混合表明,两种同工型的活性均可调节。还原和氧化还调节了从拟南芥或菠菜中分离出的天然活化酶蛋白的活性,但没有烟草,后者只有较小的同种型。这些发现表明,在含有两种同工型的植物中,Rubisco激活酶响应于光诱导的ADP / ATP比率和通过硫氧还蛋白-f的氧化还原电位的变化来调节Rubisco的活性。

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