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A superoxide dismutase-human hemoglobin fusion protein showing enhanced antioxidative properties

机译:超氧化物歧化酶-人血红蛋白融合蛋白显示增强的抗氧化性能

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摘要

Much of the toxicity of Hb has been linked to its redox activity; Hb may generate reactive oxygen species, such as the superoxide anion. Superoxide is intrinsically toxic, and superoxide dismutase (SOD) provides important cellular protection. However, if the Hb molecule is located outside the red blood cell, the normal protection systems involving SOD and catalase are no longer closely associated with it, exposing Hb and its cellular surroundings to oxidative damage. In order to produce less toxic Hb molecules, we have explored gene fusion to obtain homogeneous SOD-Hb conjugates. The chimeric protein was generated by coexpressing the human Hb l-chain/manganese SOD gene together with the o-chain gene in Escherichia coli. We show that the engineered SOD-Hb fusion protein retains the oxygen-binding capacity and, moreover, decreases cytotoxic ferrylHb (HbFet) formation when challenged with superoxide radicals. The SOD-Hb fusion protein also exhibits a 44% lower autoxidation rate and higher thermal stability than Hb alone.
机译:血红蛋白的大部分毒性与其氧化还原活性有关。血红蛋白可产生活性氧,例如超氧阴离子。超氧化物本身具有毒性,而超氧化物歧化酶(SOD)提供重要的细胞保护作用。但是,如果Hb分子位于红细胞外部,则涉及SOD和过氧化氢酶的正常保护系统将不再与之紧密相关,从而使Hb及其细胞周围环境遭受氧化损伤。为了产生毒性较小的Hb分子,我们探索了基因融合以获得均一的SOD-Hb缀合物。嵌合蛋白是通过在大肠杆菌中共表达人Hb I链/锰SOD基因和O链基因而产生的。我们表明,工程化的SOD-Hb融合蛋白保留了氧结合能力,并且在受到超氧化物自由基的挑战时,降低了细胞毒性FerrylHb(HbFet)的形成。与单独的Hb相比,SOD-Hb融合蛋白还表现出低44%的自氧化率和更高的热稳定性。

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