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Alternative oxidase (AOX) constitutes a small family of proteins in #Citrus clementina# and #Citrus sinensis# L. Osb

机译:交替氧化酶(AOX)构成#Citrus clementina#和#Citrus sinensis#L. Osb中的一小类蛋白质

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摘要

The alternative oxidase (AOX) protein is present in plants, fungi, protozoa and some invertebrates. It is involved in the mitochondrial respiratory chain, providing an alternative route for the transport of electrons, leading to the reduction of oxygen to form water. The present study aimed to characterize the family of AOX genes in mandarin (Citrus clementina) and sweet orange (Citrus sinensis) at nucleotide and protein levels, including promoter analysis, phylogenetic analysis and C. sinensis gene expression. This study also aimed to do the homology modeling of one AOX isoform (CcAOXd). Moreover, the molecular docking of the CcAOXd protein with the ubiquinone (UQ) was performed. Four AOX genes were identified in each citrus species. These genes have an open reading frame (ORF) ranging from 852 bp to 1150 bp and a number of exons ranging from 4 to 9. The 1500 bp-upstream region of each AOX gene contained regulatory cis-elements related to internal and external response factors. CsAOX genes showed a differential expression in citrus tissues. All AOX proteins were predicted to be located in mitochondria. They contained the conserved motifs LET, NERMHL, LEEEA and RADE-H as well as several putative post-translational modification sites. The CcAOXd protein was modeled by homology to the AOX of Trypanosona brucei (45% of identity). The 3-D structure of CcAOXd showed the presence of two hydrophobic helices that could be involved in the anchoring of the protein in the inner mitochondrial membrane. The active site of the protein is located in a hydrophobic environment deep inside the AOX structure and contains a diiron center. The molecular docking of CcAOXd with UQ showed that the binding site is a recessed pocket formed by the helices and submerged in the membrane. These data are important for future functional studies of citrus AOX genes and/or proteins, as well as for biotechnological approaches leading to AOX inhibition using UQ homologs. (Résumé d'auteur)
机译:备选的氧化酶(AOX)蛋白存在于植物,真菌,原生动物和一些无脊椎动物中。它参与了线粒体呼吸链,为电子的运输提供了另一种途径,从而导致氧气还原生成水。本研究旨在在核苷酸和蛋白质水平上表征柑桔(Citrus clementina)和甜橙(Citrus sinensis)中AOX基因的家族,包括启动子分析,系统发育分析和中华假丝酵母基因表达。这项研究还旨在对一种AOX同工型(CcAOXd)进行同源性建模。此外,进行了CcAOXd蛋白与泛醌(UQ)的分子对接。在每个柑橘物种中鉴定出四个AOX基因。这些基因的开放阅读框(ORF)为852 bp至1150 bp,外显子的数量为4至9。每个AOX基因的1500 bp上游区域均包含与内部和外部响应因子相关的调控顺式元件。 CsAOX基因在柑橘组织中显示差异表达。预测所有AOX蛋白都位于线粒体中。它们包含保守的基序LET,NERMHL,LEEEA和RADE-H,以及几个假定的翻译后修饰位点。 CcAOXd蛋白是通过与锥虫锥虫的AOX同源性(45%的同一性)建模的。 CcAOXd的3-D结构表明存在两个疏水螺旋,这些螺旋可能与蛋白质在线粒体内膜中的锚定有关。蛋白质的活性位点位于AOX结构内部的疏水环境中,并含有一个二铁中心。 CcAOXd与UQ的分子对接表明,结合位点是由螺旋形成并浸没在膜中的凹穴。这些数据对于柑桔类AOX基因和/或蛋白质的未来功能研究以及使用UQ同源物抑制AOX的生物技术方法都很重要。 (Résuméd'auteur)

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