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首页> 外文期刊>The Biochemical Journal >Role of the cysteine residues in Arabidopsis thaliana cyclophilin CYP20-3 in peptidyl-prolyl cis-trans isomerase and redox-related functions
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Role of the cysteine residues in Arabidopsis thaliana cyclophilin CYP20-3 in peptidyl-prolyl cis-trans isomerase and redox-related functions

机译:拟南芥亲环蛋白CYP20-3中半胱氨酸残基在肽基脯氨酰顺反异构酶和氧化还原相关功能中的作用

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Cyps (cyclophilins) are ubiquitous proteins of the immunophilin superfamily with proposed functions in protein folding, protein degradation, stress response and signal transduction. Conserved cysteine residues further suggest a roll in redox regulation. In order to get insight into the conformational change mechanism and functional properties of the chloroplast-located CYP20-3, site-directed mutagenized cysteine -> serine variants were generated and analysed for enzymatic and conformational properties under reducing and oxidizing conditions. Compared with the wildtype form, elimination of three out of the four cysteine residues decreased the catalytic efficiency of PIPI (peptidyi-prolyl cis-trans isomerase) activity of the reduced CYP20-3, indicating a regulatory role of dithiol-disulfide transitions in protein function. Oxidation was accompanied by conformational changes with a predominant role in the structural rearrangement of the disulfide bridge formed between Cys(54) and Cys(171). The rather negative E-m (midpoint redox potential) of -319 mV places CYP20-3 into the redox hierarchy of the chloroplast, suggesting the activation of CYP20-3 in the light under conditions of limited acceptor availability for photosynthesis as realized under environmental stress. Chloroplast Prx (peroxiredoxins) were identified as interacting partners of CYP20-3 in a DNA-protection assay. A catalytic role in the reduction of 2-Cys PrxA and 2-Cys PrxB was assigned to Cys(129) and Cys(171). In addition, it was shown that the isomerization and disulfide-reduction activities are two independent functions of CYP20-3 that both are regulated by the redox state of its active centre.
机译:Cyps(cyclophilins)是亲免蛋白超家族的普遍存在的蛋白质,在蛋白质折叠,蛋白质降解,应激反应和信号转导等方面具有拟议的功能。保守的半胱氨酸残基进一步暗示了氧化还原调节的滚动。为了深入了解位于叶绿体的CYP20-3的构象变化机理和功能特性,生成了定点诱变的半胱氨酸->丝氨酸变体,并在还原和氧化条件下分析了其酶学和构象特性。与野生型相比,消除四个半胱氨酸残基中的三个降低了CYP20-3还原后PIPI(肽脯氨酰顺反异构酶)活性的催化效率,表明二硫醇二硫键对蛋白质功能的调节作用。氧化伴随构象变化,在Cys(54)和Cys(171)之间形成的二硫键结构重排中起主要作用。 -319 mV的负E-m(中点氧化还原电势)使CYP20-3进入叶绿体的氧化还原层次,这表明在受光合作用的受体有限的条件下,在环境胁迫下,CYP20-3的活化在光下。在DNA保护分析中,叶绿体Prx(过氧化物酶)被认为是CYP20-3的相互作用伴侣。在还原2-Cys PrxA和2-Cys PrxB中的催化作用被指定为Cys(129)和Cys(171)。此外,已表明异构化和二硫化物的还原活性是CYP20-3的两个独立功能,两者均受其活性中心的氧化还原状态调节。

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