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参与玉米光合 NADP-苹果酸酶活性氧化还原调节的残基的功能特征。

Functional characterization of residues involved in redox modulation of maize photosynthetic NADP-malic enzyme activity.

机构信息

Centro de Estudios Fotosintéticos y Bioquímicos (CEFOBI), Universidad Nacional de Rosario, Suipacha 531, Rosario, Argentina.

出版信息

Plant Cell Physiol. 2012 Jun;53(6):1144-53. doi: 10.1093/pcp/pcs059. Epub 2012 Apr 17.

Abstract

Two highly similar plastidic NADP-malic enzymes (NADP-MEs) are found in the C(4) species maize (Zea mays); one exclusively expressed in the bundle sheath cells (BSCs) and involved in C(4) photosynthesis (ZmC(4)-NADP-ME); and the other (ZmnonC(4)-NADP-ME) with housekeeping roles. In the present work, these two NADP-MEs were analyzed regarding their redox-dependent activity modulation. The results clearly show that ZmC(4)-NADP-ME is the only one modulated by redox status, and that its oxidation produces a conformational change limiting the catalytic process, although inducing higher affinity binding of the substrates. The reversal of ZmC(4)-NADP-ME oxidation by chemical reductants suggests the presence of thiol groups able to form disulfide bonds. In order to identify the cysteine residues involved in the activity modulation, site-directed mutagenesis and MALDI-TOF (matrix-assisted laser desorption ionization-time of flight) analysis of ZmC(4)-NADP-ME were performed. The results obtained allowed the identification of Cys192, Cys246 (not conserved in ZmnonC(4)-NADP-ME), Cys270 and Cys410 as directly or indirectly implicated in ZmC(4)-NADP-ME redox modulation. These residues may be involved in forming disulfide bridge(s) or in the modulation of the oxidation of critical residues. Overall, the results indicate that, besides having acquired a high level of expression and localization in BSCs, ZmC(4)-NADP-ME displays a particular redox modulation, which may be required to accomplish the C(4) photosynthetic metabolism. Therefore, the present work could provide new insights into the regulatory mechanisms potentially involved in the recruitment of genes for the C(4) pathway during evolution.

摘要

两种高度相似的质体 NADP-苹果酸酶(NADP-ME)存在于 C4 物种玉米(Zea mays)中;一种仅在束鞘细胞(BSC)中表达,参与 C4 光合作用(ZmC4-NADP-ME);另一种(ZmnonC4-NADP-ME)具有管家作用。在本工作中,对这两种 NADP-ME 的氧化还原依赖性活性调节进行了分析。结果清楚地表明,ZmC4-NADP-ME 是唯一受氧化还原状态调节的酶,其氧化产生限制催化过程的构象变化,尽管诱导了底物更高的亲和力结合。化学还原剂使 ZmC4-NADP-ME 氧化逆转表明存在能够形成二硫键的巯基。为了确定参与活性调节的半胱氨酸残基,对 ZmC4-NADP-ME 进行了定点突变和 MALDI-TOF(基质辅助激光解吸电离-飞行时间)分析。获得的结果允许鉴定 Cys192、Cys246(在 ZmnonC4-NADP-ME 中不保守)、Cys270 和 Cys410,它们直接或间接地参与 ZmC4-NADP-ME 的氧化还原调节。这些残基可能参与形成二硫键或调节关键残基的氧化。总的来说,结果表明,除了在 BSC 中获得高水平的表达和定位外,ZmC4-NADP-ME 还显示出特定的氧化还原调节,这可能是完成 C4 光合作用代谢所必需的。因此,本工作可以为潜在参与进化过程中 C4 途径基因募集的调节机制提供新的见解。

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