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首页> 外文期刊>The biochemical journal >The carbonylation and covalent dimerization of human superoxide dismutase 1 caused by its bicarbonate-dependent peroxidase activity is inhibited by the radical scavenger tempol
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The carbonylation and covalent dimerization of human superoxide dismutase 1 caused by its bicarbonate-dependent peroxidase activity is inhibited by the radical scavenger tempol

机译:自由基清除剂tempol抑制人超氧化物歧化酶1的碳酸氢盐依赖性过氧化物酶活性引起的羰基化和共价二聚化

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摘要

pTempol (4-hydroxy-2,2,6,6-tetramethyl piperidine-1-oxyl) reduces tissue injury in animal models of various diseases via mechanisms that are not completely understood. Recently, we reported that high doses of tempol moderately increased survival in a rat model of ALS (amyotrophic lateral sclerosis) while decreasing the levels of oxidized hSOD1 (human Cu,Zn-superoxide dismutase) in spinal cord tissues. To better understand such a protective effect iin vivo/i, we studied the effects of tempol on hSOD1 oxidation iin vitro/i. The chosen oxidizing system was the bicarbonate-dependent peroxidase activity of hSOD1 that consumes Hsub2/subOsub2/sub to produce carbonate radical, which oxidizes the enzyme. Most of the experiments were performed with 30 μM hSOD1, 25 mM bicarbonate, 1 mM Hsub2/subOsub2/sub, 0.1 mM DTPA (diethylenetriaminepenta-acetic acid) and 50 mM phosphate buffer at a final pH of 7.4. The results showed that tempol (5–75 μM) does not inhibit hSOD1 turnover, but decreases its resulting oxidation to carbonylated and covalently dimerized forms. Tempol acted by scavenging the carbonate radical produced and by recombining with hSOD1-derived radicals. As a result, tempol was consumed nearly stoichiometrically with hSOD1 monomers. MS analyses of turned-over hSOD1 and of a related peptide oxidized by the carbonate radical indicated the formation of a relatively unstable adduct between tempol and hSOD1-Trpsup32?/sup. Tempol consumption by the bicarbonate-dependent peroxidase activity of hSOD1 may be one of the reasons why high doses of tempol were required to afford protection in an ALS rat model. Overall, the results of the present study confirm that tempol can protect against protein oxidation and the ensuing consequences./p
机译:Tempol(4-羟基-2,2,6,6-四甲基哌啶-1-氧基)可通过尚未完全了解的机制减轻各种疾病动物模型中的组织损伤。最近,我们报道了高剂量的tempol在ALS(肌萎缩性侧索硬化)大鼠模型中适度增加了存活率,同时降低了脊髓组织中氧化的hSOD1(人类Cu,Zn-超氧化物歧化酶)的水平。为了更好地了解在体内的保护作用,我们研究了tempol对hSOD1氧化在体外的作用。选择的氧化系统是hSOD1的碳酸氢盐依赖性过氧化物酶活性,它消耗H 2 O 2 产生碳酸根,从而使该酶氧化。大多数实验是使用30μmhSOD1、25mM碳酸氢盐,1mH 2 O 2 ,0.1mM DTPA(二亚乙基三胺五乙酸)进行的最终pH值为7.4的50mM磷酸盐缓冲液。结果表明,tempol(5-75μM)不会抑制hSOD1转化,但是会降低其氧化成羰基化和共价二聚的形式。 Tempol通过清除产生的碳酸盐自由基并与hSOD1衍生的自由基重组来发挥作用。结果,hSOD1单体几乎以化学计量消耗了tempol。质谱分析表明,hSOD1和被碳酸盐自由基氧化的相关肽的转变表明在tempol和hSOD1-Trp 32?之间形成了相对不稳定的加合物。 hSOD1的碳酸氢盐依赖性过氧化物酶活性消耗的tempol可能是在ALS大鼠模型中需要高剂量的tempol才能提供保护的原因之一。总体而言,本研究的结果证实了tempol可以防止蛋白质氧化和随之而来的后果。

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