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Thioredoxin Selectivity for Thiol-based Redox Regulation of Target Proteins in Chloroplasts

机译:硫氧还蛋白对基于硫醇的叶绿体中靶蛋白的氧化还原调节的选择性

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摘要

Redox regulation based on the thioredoxin (Trx) system is believed to ensure light-responsive control of various functions in chloroplasts. Five Trx subtypes have been reported to reside in chloroplasts, but their functional diversity in the redox regulation of Trx target proteins remains poorly clarified. To directly address this issue, we studied the Trx-dependent redox shifts of several chloroplast thiol-modulated enzymes in vitro and in vivo. In vitro assays using a series of Arabidopsis recombinant proteins provided new insights into Trx selectivity for the redox regulation as well as the underpinning for previous suggestions. Most notably, by combining the discrimination of thiol status with mass spectrometry and activity measurement, we identified an uncharacterized aspect of the reductive activation of NADP-malate dehydrogenase; two redox-active Cys pairs harbored in this enzyme were reduced via distinct utilization of Trxs even within a single polypeptide. In our in vitro assays, Trx-f was effective in reducing all thiol-modulated enzymes analyzed here. We then investigated the in vivo physiological relevance of these in vitro findings, using Arabidopsis wild-type and Trx-f-deficient plants. Photoreduction of fructose-1,6-bisphosphatase was partially impaired in Trx-f-deficient plants, but the global impact of Trx-f deficiency on the redox behaviors of thiol-modulated enzymes was not as striking as expected from the in vitro data. Our results provide support for the in vivo functionality of the Trx system and also highlight the complexity and plasticity of the chloroplast redox network.
机译:据信基于硫氧还蛋白(Trx)系统的氧化还原调节可确保光响应性控制叶绿体中的各种功能。据报道,有五种Trx亚型存在于叶绿体中,但是它们在Trx靶蛋白的氧化还原调节中的功能多样性仍然不清楚。为了直接解决此问题,我们在体外和体内研究了几种叶绿体硫醇调节酶的Trx依赖性氧化还原转变。使用一系列拟南芥重组蛋白进行的体外测定为Trx对氧化还原调节的选择性以及先前建议的基础提供了新见解。最值得注意的是,通过结合硫醇状态的鉴别,质谱和活性测量,我们确定了NADP-苹果酸脱氢酶还原激活的一个未表征的方面。通过Trxs的独特利用,即使在单个多肽中,也减少了该酶中包含的两个氧化还原活性Cys对。在我们的体外测定中,Trx-f可有效减少此处分析的所有巯基调节的酶。然后,我们使用拟南芥野生型和Trx-f缺陷型植物调查了这些体外发现的体内生理相关性。 Trx-f缺乏植物中果糖-1,6-双磷酸酶的光还原受到部分损害,但是Trx-f缺乏对硫醇调节酶的氧化还原行为的全球影响并不像体外数据所预期的那样显着。我们的结果为Trx系统的体内功能提供了支持,并突出了叶绿体氧化还原网络的复杂性和可塑性。

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