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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Unexpected photosensitivity of the well-characterized heme enzyme chlorite dismutase
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Unexpected photosensitivity of the well-characterized heme enzyme chlorite dismutase

机译:表征血红素酶氯化物歧化酶的意外光敏性

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Chlorite dismutase is a heme enzyme that catalyzes the conversion of the toxic compound ClO2- (chlorite) to innocuous Cl- and O-2. The reaction is a very rare case of enzymatic O-O bond formation, which has sparked the interest to elucidate the reaction mechanism using pre-steady-state kinetics. During stopped-flow experiments, spectroscopic and structural changes of the enzyme were observed in the absence of a substrate in the time range from milliseconds to minutes. These effects are a consequence of illumination with UV-visible light during the stopped-flow experiment. The changes in the UV-visible spectrum in the initial 200 s of the reaction indicate a possible involvement of a ferric superoxide/ferrous oxo or ferric hydroxide intermediate during the photochemical inactivation. Observed EPR spectral changes after 30 min reaction time indicate the loss of the heme and release of iron during the process. During prolonged illumination, the oligomeric state of the enzyme changes from homo-pentameric to monomeric with subsequent protein precipitation. Understanding the effects of UV-visible light illumination induced changes of chlorite dismutase will help us to understand the nature and mechanism of photosensitivity of heme enzymes in general. Furthermore, previously reported stopped-flow data of chlorite dismutase and potentially other heme enzymes will need to be re-evaluated in the context of the photosensitivity.
机译:亚氯酸盐歧化酶是一种血红素酶,催化有毒化合物ClO2-(亚氯酸盐)转化为无害的Cl-和O-2。该反应是一种非常罕见的酶促O-O键形成的情况,这引发了人们对利用预稳态动力学阐明反应机理的兴趣。在停流实验中,在没有底物的情况下,在毫秒到分钟的时间范围内观察到酶的光谱和结构变化。这些效应是在停流实验期间用紫外可见光照明的结果。在反应的最初200秒内,紫外-可见光谱的变化表明,在光化学失活过程中,可能涉及到一种超氧铁/氧化亚铁或氢氧化铁中间体。反应30分钟后观察到的EPR光谱变化表明,在反应过程中,血红素的损失和铁的释放。在长时间的光照下,酶的寡聚状态随着随后的蛋白质沉淀而从同五聚体变为单体。了解紫外-可见光照射引起的亚氯酸盐歧化酶变化的影响将有助于我们了解血红素酶光敏性的本质和机制。此外,之前报告的亚氯酸盐歧化酶和潜在的其他血红素酶的停流数据需要在光敏性的背景下重新评估。

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