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首页> 外文期刊>Spectroscopy >Structural lesion to ribonuclease A caused by reductive stress: Assessment by Raman spectroscopy
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Structural lesion to ribonuclease A caused by reductive stress: Assessment by Raman spectroscopy

机译:还原应力引起的核糖核酸酶A的结构性病变:拉曼光谱法评估

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摘要

The damages induced by reductive radical stress on bovine pancreatic ribonuclease A (RNAse A) were investigated by Raman spectroscopy. Gamma-irradiation was used to simulate the endogenous formation of reductive species, in particular H-center dot atom that is a simple one-electron equivalent reducing agent. Specific damages occur at sensitive amino acid sites, selectively, rather than indiscriminately, leading to the structure modification of the protein. Sulfur-containing residues (Met and Cys) and aromatic residues are appreciably attacked. In particular, extensive changes in the disulfide bridge conformations are induced as well as conformational changes of the protein secondary structure; a gradual conversion of alpha-helical to pleated-sheet geometry was evidenced, indicating a higher ability of reducing radicals in denaturing the protein structure compared with that of oxidizing radical species.
机译:通过拉曼光谱研究了还原性自由基应激对牛胰腺核糖核酸酶A(RNA酶A)的破坏。伽马射线辐照用于模拟还原物种的内源性形成,特别是作为简单的单电子当量还原剂的H中心点原子。特异性损伤发生在敏感的氨基酸位点,有选择地而不是不加选择地导致蛋白质的结构修饰。含硫残基(Met和Cys)和芳族残基受到明显攻击。特别是,诱导了二硫键构象的广泛变化以及蛋白质二级结构的构象变化。证实了α-螺旋向折叠薄片的几何形状的逐渐转化,这表明与氧化自由基种类相比,还原自由基使蛋白质结构变性的能力更高。

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