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首页> 外文期刊>BMC Biochemistry >Low affinity PEGylated hemoglobin from Trematomus bernacchii , a model for hemoglobin-based blood substitutes
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Low affinity PEGylated hemoglobin from Trematomus bernacchii , a model for hemoglobin-based blood substitutes

机译:来自伯纳德氏菌的低亲和力聚乙二醇化血红蛋白,一种基于血红蛋白的血液替代品的模型

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Conjugation of human and animal hemoglobins with polyethylene glycol has been widely explored as a means to develop blood substitutes, a novel pharmaceutical class to be used in surgery or emergency medicine. However, PEGylation of human hemoglobin led to products with significantly different oxygen binding properties with respect to the unmodified tetramer and high NO dioxygenase reactivity, known causes of toxicity. These recent findings call for the biotechnological development of stable, low-affinity PEGylated hemoglobins with low NO dioxygenase reactivity. To investigate the effects of PEGylation on protein structure and function, we compared the PEGylation products of human hemoglobin and Trematomus bernacchii hemoglobin, a natural variant endowed with a remarkably low oxygen affinity and high tetramer stability. We show that extension arm facilitated PEGylation chemistry based on the reaction of T. bernacchii hemoglobin with 2-iminothiolane and maleimido-functionalyzed polyethylene glycol (MW 5000 Da) leads to a tetraPEGylated product, more homogeneous than the corresponding derivative of human hemoglobin. PEGylated T. bernacchii hemoglobin largely retains the low affinity of the unmodified tetramer, with a p50 50 times higher than PEGylated human hemoglobin. Moreover, it is still sensitive to protons and the allosteric effector ATP, indicating the retention of allosteric regulation. It is also 10-fold less reactive towards nitrogen monoxide than PEGylated human hemoglobin. These results indicate that PEGylated hemoglobins, provided that a suitable starting hemoglobin variant is chosen, can cover a wide range of oxygen-binding properties, potentially meeting the functional requirements of blood substitutes in terms of oxygen affinity, tetramer stability and NO dioxygenase reactivity.
机译:人和动物血红蛋白与聚乙二醇的结合已被广泛地探索作为开发血液替代品的手段,血液替代品是一种用于外科手术或急诊医学的新型药物。然而,人血红蛋白的聚乙二醇化导致产物具有相对于未修饰的四聚体和高NO二加氧酶反应性而言明显不同的氧结合性质,这是已知的毒性原因。这些最新发现要求具有低二氧化氮反应性的稳定的,低亲和力的聚乙二醇化血红蛋白的生物技术开发。为了研究聚乙二醇化对蛋白质结构和功能的影响,我们比较了人血红蛋白和伯纳木霉血红蛋白的聚乙二醇化产物,这是一种天然变异体,具有极低的氧亲和力和较高的四聚体稳定性。我们显示,延长臂基于伯纳奇T.血红蛋白与2-亚氨基硫杂环戊烷和马来酰亚胺基官能化的聚乙二醇(MW 5000 Da)的反应促进了PEG化化学反应,产生了四聚乙二醇化产物,比人血红蛋白的相应衍生物更均一。聚乙二醇化的伯氏疏螺旋体血红蛋白在很大程度上保留了未修饰四聚体的低亲和力,其p50值比聚乙二醇化的人血红蛋白高50倍。此外,它仍然对质子和变构效应子ATP敏感,表明保留了变构调节。它对一氧化氮的反应性也比聚乙二醇化的人类血红蛋白低10倍。这些结果表明,只要选择了合适的起始血红蛋白变体,聚乙二醇化的血红蛋白就可以涵盖广泛的氧结合特性,从而潜在地满足血液代用品在氧亲和力,四聚体稳定性和NO双加氧酶反应性方面的功能要求。

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