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Uncommon functional properties of the first piscine 26S proteasome from the Antarctic notothenioid Trematomus bernacchii

机译:来自南极类异兽类贝类颤动的第一个26S蛋白酶体的罕见功能特性

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摘要

Protein homoeostasis is a fundamental process allowing the preservation of functional proteins and it has a great impact on the life of the Antarctic organisms. However, the effect of low temperatures on protein turnover is poorly understood and the cold-adaptation of the degradation machinery remains an unresolved issue. As the 26S proteasome represents the main proteolytic system devoted to the controlled degradation of intracellular proteins, the purpose of the present study was to investigate the functions of this complex in the notothenioid Trematomus bernacchii, in order to better understand its role in the physiology of Antarctic fish. To this aim, we purified and characterized the 26S proteasome from T. bernacchii and isolated the cDNAs codifying seven of the 14 subunits belonging to the proteasome 20S core particle. Results provided evidences of the high resistance of the piscine 26S proteasome to oxidative agents and of its ‘uncommon’ ability to efficiently hydrolyse oxidized bovine serum albumin (BSA), suggesting that this enzymatic complex could play a key role in the antioxidant defense systems in fish inhabiting permanently cold marine environments. These unique properties were also reflected by the 3D model analysis, which revealed a higher structural stability of the piscine complex respect to the murine template. Finally, a comparative analysis, performed in a variety of tissues collected from T. bernacchii and the temperate fish Dicentrarchus labrax, showed a lower protein retention in the cold-adapted fish, possibly due to a better efficiency of its degradation machinery.
机译:蛋白质同质化是一个基本过程,可以保留功能性蛋白质,并且对南极生物的生命具有重大影响。然而,人们对低温对蛋白质更新的影响了解甚少,并且降解机制的冷适应仍未解决。由于26S蛋白酶体代表着主要的蛋白水解系统,致力于控制细胞内蛋白质的降解,因此本研究的目的是研究该复合物在类非甾体类贝氏颤动中的功能,以便更好地了解其在南极生理学中的作用。鱼。为了这个目的,我们从伯氏杆菌中纯化并鉴定了26S蛋白酶体,并分离了编码属于20S核心蛋白酶体的14个亚基中的7个的cDNA。结果提供了证据,表明鱼26S蛋白酶体对氧化剂具有很高的抵抗力,以及其有效水解氧化的牛血清白蛋白(BSA)的“罕见”能力,表明该酶复合物可能在鱼类的抗氧化防御系统中发挥关键作用居住在永久寒冷的海洋环境中。这些独特的特性也通过3D模型分析得到了反映,该分析揭示了鱼复合物相对于鼠模板具有更高的结构稳定性。最后,在从伯氏嗜热菌和温带鱼类Dicentrarchus labrax收集的各种组织中进行的比较分析表明,冷适应鱼的蛋白质保留量较低,这可能是由于其降解机制的效率更高。

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