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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Methylglyoxal mediated conformational changes in histone H2A-generation of carboxyethylated advanced glycation end products
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Methylglyoxal mediated conformational changes in histone H2A-generation of carboxyethylated advanced glycation end products

机译:甲基乙二醛介导的羧化高级糖基化终产物的组蛋白H2A生成中的构象变化

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摘要

Methylglyoxal, an oxo-aldehyde has been implicated as a potential precursor in non enzymatic glycation reactions. Its role in the modification of extra cellular proteins has been extensively reported, but little is known about its modification of nuclear proteins, like histones. Here, we report the methyl-glyoxal induced modification of histone H2A which forms an essential part of intact core nucleosome. In this study commercially available histone H2A was subjected to in vitro non-enzymatic glycation by methylglyoxal. The structural alterations in the histone were characterised by various biophysical and biochemical techniques. The modified histone showed hyperchromicity at 276 nm, loss in intrinsic tyrosine fluorescence intensity at 305 nm along with a red shift, cross linking and dimer formation in SDS PAGE, induction of α-helix in CD spectroscopy, reduced hydrophobicity in ANS binding studies, accumulation of AGE products, increased carbonyl content, and appearance of a novel peak showing carboxyethylation complemented by a shift in amide I and amide II bands in ATR-FTIR spectroscopy. The modified histone exhibited increased melting temperatures (T_m) and enhanced heat capacities (C_p) in differential scanning calorimetric analysis. The results suggest that methylglyoxal significantly altered the structure of the nuclear histone H2A by non enzymatic glycation reaction. The conformational changes in histone H2A may influence the chromatin integrity which may have implications in various pathological conditions.
机译:甲基乙二醛,一种氧代醛已被认为是非酶促糖基化反应的潜在前体。其在细胞外蛋白修饰中的作用已被广泛报道,但对其核蛋白如组蛋白的修饰知之甚少。在这里,我们报告甲基乙二醛诱导的组蛋白H2A的修饰,形成完整的核心核小体的重要组成部分。在这项研究中,通过甲基乙二醛对市售组蛋白H2A进行了体外非酶糖基化。组蛋白中的结构改变通过各种生物物理和生化技术来表征。修饰的组蛋白在276 nm处显示增色性,在305 nm处固有酪氨酸荧光强度消失,并在SDS PAGE中出现红移,交联和二聚体形成,CD光谱中诱导了α-螺旋,在ANS结合研究中疏水性降低,积累AGE产物的分析,羰基含量的增加以及在ATR-FTIR光谱中出现了一个新峰的出现,该峰显示出羧乙基化并由酰胺I和酰胺II谱带的移动所补充。修饰的组蛋白在差示扫描量热分析中显示出升高的熔融温度(T_m)和增强的热容(C_p)。结果表明,甲基乙二醛通过非酶促糖基化反应显着改变了核组蛋白H2A的结构。组蛋白H2A的构象变化可能会影响染色质完整性,这可能会影响各种病理状况。

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