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Two Cys or Not Two Cys? That Is the Question; Alternative Oxidase in the Thermogenic Plant Sacred Lotus

机译:两个半胱氨酸还是不是两个半胱氨酸?就是那个问题;生热植物神圣莲花中的替代氧化酶

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摘要

Sacred lotus (Nelumbo nucifera) regulates temperature in its floral chamber to 32°C to 35°C across ambient temperatures of 8°C to 40°C with heating achieved through high alternative pathway fluxes. In most alternative oxidase (AOX) isoforms, two cysteine residues, Cys1 and Cys2, are highly conserved and play a role in posttranslational regulation of AOX. Further control occurs via interaction of reduced Cys1 with -keto acids, such as pyruvate. Here, we report on the in vitro regulation of AOX isolated from thermogenic receptacle tissues of sacred lotus. AOX protein was mostly present in the reduced form, and only a small fraction could be oxidized with diamide. Cyanide-resistant respiration in isolated mitochondria was stimulated 4-fold by succinate but not pyruvate or glyoxylate. Insensitivity of the alternative pathway of respiration to pyruvate and the inability of AOX protein to be oxidized by diamide suggested that AOX in these tissues may lack Cys1. Subsequently, we isolated two novel cDNAs for AOX from thermogenic tissues of sacred lotus, designated as NnAOX1a and NnAOX1b. Deduced amino acid sequences of both confirmed that Cys1 had been replaced by serine; however, Cys2 was present. This contrasts with AOXs from thermogenic Aroids, which contain both Cys1 and Cys2. An additional cysteine was present at position 193 in NnAOX1b. The significance of the sequence data for regulation of the AOX protein in thermogenic sacred lotus is discussed and compared with AOXs from other thermogenic and nonthermogenic species.
机译:神圣荷花(Nelumbo nucifera)在8°C至40°C的环境温度下将其花室中的温度调节至32°C至35°C,并通过高替代途径通量实现加热。在大多数替代氧化酶(AOX)亚型中,两个半胱氨酸残基Cys1和Cys2高度保守,并在AOX的翻译后调控中发挥作用。通过还原的Cys1与-酮酸(例如丙酮酸)的相互作用,可以进行进一步的控制。在这里,我们报告从神圣莲花的产热受体组织中分离出的AOX的体外调节。 AOX蛋白主要以还原形式存在,只有一小部分可以被二酰胺氧化。琥珀酸刺激分离的线粒体中抗氰化物的呼吸4倍,而丙酮酸或乙醛酸则不。丙酮酸的替代呼吸途径不敏感,以及二酰胺无法使AOX蛋白氧化,提示这些组织中的AOX可能缺少Cys1。随后,我们从神圣莲花的产热组织中分离出两个新的AOX cDNA,分别命名为NnAOX1a和NnAOX1b。推导的氨基酸序列均证实Cys1已被丝氨酸取代。但是,存在Cys2。这与同时含有Cys1和Cys2的生热Aroids的AOX形成对比。 NnAOX1b中第193位存在另一个半胱氨酸。讨论了序列数据对产热神圣莲花中AOX蛋白调控的意义,并将其与其他产热和非产热物种的AOX进行了比较。

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  • 来源
    《Plant Physiology》 |2009年第2期|p.987-995|共9页
  • 作者单位

    Institute for Conservation Biology, University of Wollongong, Wollongong, New South Wales 2522, Australia (N.G., S.R.);

    School of Earth and Environmental Sciences, University of Adelaide, Adelaide, South Australia 5005, Australia (N.G., J.W.);

    and Cryobiofrontier Research Center, Faculty of Agriculture, Iwate University, Morioka, Iwate 020–8550, Japan (Y.O., Y.K., K.I.);

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  • 入库时间 2022-08-17 23:31:57

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