Coppola Daniela, Abbruzzetti Stefania, Nicoletti Francesco, Merlino Antonello, Gambacurta Alessandra, Giordano Daniela, Howes Barry D, De Sanctis Giampiero, Vitagliano Luigi, Bruno Stefano, di Prisco Guido, Mazzarella Lelio, Smulevich Giulietta, Coletta Massimo, Viappiani Cristiano, Vergara Alessandro, Verde Cinzia
Institute of Protein Biochemistry, CNR, Via Pietro Castellino 111, I-80131 Naples, Italy.
Mol Biosyst. 2012 Oct 30;8(12):3295-304. doi: 10.1039/c2mb25210d.
The major haemoglobin of the sub-Antarctic fish Eleginops maclovinus was structurally and functionally characterised with the aim to compare molecular environmental adaptations in the O(2)-transport system of sub-Antarctic fishes of the suborder Notothenioidei with those of their high-latitude relatives. Ligand-binding kinetics of the major haemoglobin of E. maclovinus indicated strong stabilisation of the liganded quaternary T state, enhanced in the presence of the physiological allosteric effector ATP, compared to that of high-Antarctic Trematomus bernacchii. The activation enthalpy for O(2) dissociation was dramatically lower than that in T. bernacchii haemoglobin, suggesting remarkable differences in temperature sensitivity and structural changes associated with O(2) release and exit from the protein. The haemoglobin functional properties, together with the X-ray structure of the CO form at 1.49 Å resolution, the first of a temperate notothenioid, strongly support the hypothesis that in E. maclovinus, whose life-style varies according to changes in habitat, the mechanisms that regulate O(2) affinity and the ATP-induced Root effect differ from those of high-Antarctic Notothenioids.
对亚南极鱼类麦氏南美南极鱼(Eleginops maclovinus)的主要血红蛋白进行了结构和功能表征,目的是比较南极亚目(Notothenioidei)亚南极鱼类与其高纬度近亲在氧气运输系统中的分子环境适应性。与南极高纬度的伯氏南极鱼(Trematomus bernacchii)相比,麦氏南美南极鱼主要血红蛋白的配体结合动力学表明,在生理变构效应物ATP存在的情况下,配体结合的四级T态得到了强烈稳定。氧气解离的活化焓显著低于伯氏南极鱼血红蛋白中的活化焓,这表明在温度敏感性以及与氧气从蛋白质中释放和逸出相关的结构变化方面存在显著差异。血红蛋白的功能特性,以及以1.49 Å分辨率解析的一氧化碳形式的X射线结构(这是温带南极亚目鱼类中的首个此类结构),有力地支持了以下假设:在生活方式随栖息地变化而变化的麦氏南美南极鱼中,调节氧气亲和力和ATP诱导的鲁特效应的机制与高纬度南极鱼类不同。