首页> 外文期刊>Biochimica et Biophysica Acta. General Subjects >Fructose-induced structural and functional modifications of hemoglobin: Implication for oxidative stress in diabetes mellitus.
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Fructose-induced structural and functional modifications of hemoglobin: Implication for oxidative stress in diabetes mellitus.

机译:果糖诱导的血红蛋白结构和功能修饰:对糖尿病氧化应激的影响。

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Increased fructose concentration in diabetes mellitus causes fructation of several proteins. Here we have studied fructose-induced modifications of hemoglobin. We have demonstrated structural changes in fructose-modified hemoglobin (Fr-Hb) by enhanced fluorescence emission with excitation at 285 nm, more surface accessible tryptophan residues by using acrylamide, changes in secondary and tertiary structures by CD spectroscopy, and increased thermolability by using differential scanning calorimetry in comparison with those of normal hemoglobin, HbA(0). Release of iron from hemoglobin is directly related with the extent of fructation. H(2)O(2)-induced iron release from Fr-Hb is significantly higher than that from HbA(0). In the presence of H(2)O(2), Fr-Hb degrades arachidonic acid, deoxyribose and plasmid DNA more efficiently than HbA(0), and these processes are significantly inhibited by desferrioxamine or mannitol. Thus increased iron release from Fr-Hb may cause enhanced formation of free radicals andoxidative stress in diabetes. Compared to HbA(0), Fr-Hb exhibits increased carbonyl formation, an index of oxidative modification. Functional modification in Fr-Hb has also been demonstrated by its decreased peroxidase activity and increased esterase activity in comparison with respective HbA(0) activities. Molecular modeling study reveals Lys 7(alpha), Lys 127(alpha) and Lys 66(beta) to be the probable potential targets for fructation in HbA(0).
机译:糖尿病中果糖浓度升高会导致几种蛋白质的果糖化。在这里,我们研究了果糖引起的血红蛋白修饰。我们已经证明了果糖修饰的血红蛋白(Fr-Hb)的结构变化是通过在285 nm处激发而增强的荧光发射,通过使用丙烯酰胺而在表面上可获得的色氨酸残基更大,通过CD光谱学在二级和三级结构中的变化以及通过使用差分法提高了可热性扫描量热法与正常血红蛋白HbA(0)的比较。铁从血红蛋白中的释放与果糖的程度直接相关。 H(2)O(2)诱导的铁从Fr-Hb释放明显高于HbA(0)。在H(2)O(2)的存在下,Fr-Hb比HbA(0)更有效地降解花生四烯酸,脱氧核糖和质粒DNA,并且这些过程明显受到去铁胺或甘露醇的抑制。因此,铁从Fr-Hb释放的增加可能会导致糖尿病中自由基的形成增加和氧化应激。与HbA(0)相比,Fr-Hb的羰基形成增加,是氧化修饰的指数。与相应的HbA(0)活性相比,Fr-Hb的功能修饰也已通过其过氧化物酶活性降低和酯酶活性增强来证明。分子建模研究表明Lys7α,Lys127α和Lys66β是HbA(0)中果糖的潜在潜在靶标。

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