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首页> 外文期刊>Biological research: BR >Superoxide dismutase and catalase: tissue activities and relation with age in the long-lived species Margaritifera margaritifera
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Superoxide dismutase and catalase: tissue activities and relation with age in the long-lived species Margaritifera margaritifera

机译:超氧化物歧化酶和过氧化氢酶:长寿种玛格丽特酒(Margaritifera)的组织活性及其与年龄的关系

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摘要

Free radicals are extremely reactive and produce damage and modify cell functions. Furthermore, superoxide dismutase and catalase are believed to play a key role in the enzymatic defence of the cells. Indeed, some authors have argued that reduced free-radical damage could explain increased longevity. Margaritifera margaritifera is one of the longest-lived animals in the world (up to 100-200 years). Furthermore, this organism may serve as a useful model for gerontologists interested in exploring the mechanisms that promote long life and the slowing of senescence. The present study estimated for the first time individual enzymatic activity for superoxide dismutase isozymes (Cu,Zn-SOD and Mn-SOD) and catalase in tissue preparations of gills, digestive glands and mantles of two natural populations of M. margaritifera. Superoxide dismutase activities showed significant differences in the tissues analysed of specimens from the same river and in specimens from different rivers for the same tissue. Catalase activity levels also showed significant variation, but differences among tissues, within tissues or between rivers were of relatively little interest. We failed to find any relationship between individual enzymatic activities and the age estimated for each mussel. Indeed, the wide variation found in activity levels can be principally interpreted as an adaptation to the unpredictable and changing nature of freshwater natural habitats.
机译:自由基具有极强的反应性,会产生损伤并改变细胞功能。此外,据信超氧化物歧化酶和过氧化氢酶在细胞的酶促防御中起关键作用。确实,一些作者认为,自由基损伤的减少可以解释寿命的延长。玛格丽特玛格丽特玛(Margaritifera)是世界上寿命最长的动物之一(长达100-200年)。此外,对于有兴趣探索促进长寿命和延缓衰老的机制的老年学家而言,这种生物体可以作为有用的模型。本研究首次估计了两个自然种群玛格丽特。的g,消化腺和地幔组织制剂中超氧化物歧化酶同工酶(Cu,Zn-SOD和Mn-SOD)和过氧化氢酶的个体酶活性。超氧化物歧化酶活性在同一河流标本的分析组织和同一组织不同河流标本的组织中显示出显着差异。过氧化氢酶活性水平也显示出显着的变化,但是对组织之间,组织内或河流之间的差异的兴趣相对较小。我们没有找到单独的酶活性与每个贻贝的估计年龄之间的任何关系。的确,活动水平的广泛变化可以原则上解释为适应淡水自然生境的不可预测和变化的性质。

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