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Structural and functional characterization of glutaraldehyde-polymerized bovine hemoglobin and its isolated fractions

机译:戊二醛聚合牛血红蛋白及其分离组分的结构和功能表征

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Glutaraldehyde-polymerized bovine hemoglobin (PolyHbBv, trade name Oxyglobin), is a non-site-specific modified hemoglobin-based oxygen-carrying solution, developed for use in veterinary medicine. PolyHbBv was fractionated into four distinct tetrameric and multiple polytetrameric forms ranging in molecular mass (87.2-502.3 kDa) using size exclusion chromatography (SEC) and verified by laser light scattering. We evaluated the structural modification occurring in the fractionated mixture of PolyHbBv and assessed the functionality and redox stability of each fraction in relation to the mixture as a whole. Intramolecular cross-linking evaluation as performed by MALDI-MS and SEC under dissociating conditions revealed no-site-specific tetramer stabilization within the fractions; Intermolecular cross-linking was highly correlated with lysine and histidine modification as determined by amino acid composition analysis. While native unmodified hemoglobin, HbBv, PolyHbBv, and PolyHbBv fractions (F1-F4) revealed significant methionine oxidation, modification, or both, the critical β Met55 located in the functionally plastic domains (α 1-β 1 interface) of HbBv was unaltered. Moreover, neither of the two β Cys93 located in the highly plastic α 1-β 2 interface were modified in PolyHbBv or in F1-F4. Our structural analysis also revealed that the reported loss in sensitivity to chloride in PolyHbBv could not be attributed to direct alteration of chloride ion binding amino acids. Structural modification imparted by glutaraldehyde resulted in nearly identical functional characteristics of PolyHbBv and its fractions with regard to oxygen equilibrium, ligand binding, and autoxidative kinetics.
机译:戊二醛聚合的牛血红蛋白(PolyHbBv,商品名Oxyglobin)是一种非位点修饰的基于血红蛋白的载氧溶液,开发用于兽医。使用大小排阻色谱法(SEC)将PolyHbBv分为分子量(87.2-502.3 kDa)的四种不同的四聚体和多种聚四聚体形式,并通过激光散射进行验证。我们评估了PolyHbBv分馏混合物中发生的结构修饰,并评估了每个馏分相对于整个混合物的功能性和氧化还原稳定性。 MALDI-MS和SEC在解离条件下进行的分子内交联评估表明,馏分内无位点特异性四聚体稳定。通过氨基酸组成分析确定,分子间交联与赖氨酸和组氨酸修饰高度相关。尽管天然未修饰的血红蛋白,HbBv,PolyHbBv和PolyHbBv组分(F1-F4)显示出明显的甲硫氨酸氧化,修饰或两者,但位于HbBv的功能性塑料结构域(α1-β1界面)中的关键βMet55并未改变。而且,位于高塑性α1-β2界面中的两个βCys93在PolyHbBv或F1-F4中均未修饰。我们的结构分析还表明,报告的PolyHbBv中对氯离子敏感性的损失不能归因于氯离子结合氨基酸的直接改变。戊二醛赋予的结构修饰导致了PolyHbBv及其组分在氧平衡,配体结合和自氧化动力学方面几乎相同的功能特性。

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