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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >The influence of maltose modified poly(propylene imine) dendrimers on hen egg white lysozyme structure and thermal stability
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The influence of maltose modified poly(propylene imine) dendrimers on hen egg white lysozyme structure and thermal stability

机译:麦芽糖修饰的聚丙二烯树枝状大分子对蛋清溶菌酶结构和热稳定性的影响

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In this study the influence of dendrimers' surface modification upon the strength of interaction with proteins was examined. Unmodified, cationic poly(propylene imine) dendrimer of the fourth generation (PPI G4), two PPI G4 dendrimers, partially and fully coated with maltose residues, and anionic polyamidoamine dendrimer of the third and a half generation (PAMAM G3.5 dendrimer), were used in the study. Hen egg white lysozyme, which possesses a cationic net charge under physiological conditions, was chosen as a model protein. The influence of dendrimers on the thermal stability of lysozyme was studied using differential scanning calorimetry (DSC) and circular dichroism (CD) methods. Additionally, the effect of dendrimers on the availability of lysozyme tryptophan residues to fluorescence quenchers was examined. It was shown that modification of dendrimer surface with maltose reduced its influence on lysozyme properties. However, even full surface modification, resulting in a neutral surface charge, did not deprive dendrimer of the ability to interact with the protein. It was probably caused by the introduction of a large number of hydroxyl groups from maltose residues on the surface of the dendrimer. In the study a comparable strength of influence exerted on lysozyme by cationic PPI dendrimer and anionic PAMAM G3.5 dendrimer was observed. The possible explanation of this fact is the presence of both positively and negatively charged areas on the surface of lysozyme. Such areas allow dendrimers possessing opposite surface charges to interact with lysozyme.
机译:在这项研究中,研究了树枝状聚合物表面改性对与蛋白质相互作用强度的影响。第四代未修饰的阳离子聚(丙烯亚胺)树枝状大分子(PPI G4),部分和完全覆盖有麦芽糖残基的两个PPI G4树枝状大分子,以及第三代和半年代的阴离子型聚酰胺型胺树枝状大分子(PAMAM G3.5树枝状大分子),在研究中使用。选择在生理条件下具有阳离子净电荷的鸡蛋清溶菌酶作为模型蛋白。使用差示扫描量热法(DSC)和圆二色性(CD)方法研究了树枝状聚合物对溶菌酶热稳定性的影响。另外,检查了树枝状聚合物对溶菌酶色氨酸残基对荧光猝灭剂的利用度的影响。结果表明,用麦芽糖修饰树状聚合物表面可降低其对溶菌酶特性的影响。但是,即使进行完整的表面修饰(导致中性表面电荷)也不会使树状聚体失去与蛋白质相互作用的能力。这可能是由于树状大分子表面麦芽糖残基引入了大量羟基而引起的。在该研究中,观察到了阳离子PPI树枝状聚合物和阴离子PAMAM G3.5树枝状聚合物对溶菌酶的影响程度相当。这个事实的可能解释是溶菌酶表面同时存在带正电和带负电的区域。这些区域允许具有相反表面电荷的树枝状聚合物与溶菌酶相互作用。

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