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Mechanistic investigation of domain specific unfolding of human serum albumin and the effect of sucrose

机译:人血清白蛋白结构域特异性展开和蔗糖作用的机理研究

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摘要

This study is devoted to understand the unfolding mechanism of a multidomain protein, human serum albumin (HSA), in absence and presence of the sucrose by steady-state and time-resolved fluorescence spectroscopy with domain specific marker molecules and is further being substantiated by molecular dynamics (MD) simulation. In water, the domain III of HSA found to unfold first followed by domains I and II as the concentration of GnHCl is increased in the medium. The sequential unfolding behavior of different domains of HSA remains same in presence of sucrose; however, a higher GnHCl concentration is required for unfolding, suggesting stabilizing effect of sucrose on HSA. Domain I is found to be most stabilized by sucrose. The stabilization of domain II is somewhat similar to domain I, but the effect of sucrose on domain III is found to be very small. MD simulation also predicted a similar behavior of sucrose on HSA. The stabilizing effect of sucrose is explained in terms of the entrapment of water molecules in between HSA surface and sucrose layer as well as direct interaction between HSA and sucrose.
机译:这项研究致力于通过具有域特异性标记物分子的稳态和时间分辨荧光光谱技术来了解不存在和存在蔗糖的情况下,多域蛋白,人血清白蛋白(HSA)的展开机理,并进一步被分子证实动力学(MD)模拟。在水中,随着培养基中GnHCl浓度的增加,HSA的结构域III首先展开,然后是结构域I和II。在蔗糖存在下,HSA的不同结构域的顺序展开行为保持相同。但是,解折叠需要更高的GnHCl浓度,这表明蔗糖对HSA有稳定作用。发现域I最受蔗糖稳定。结构域II的稳定作用与结构域I相似,但是发现蔗糖对结构域III的作用很小。 MD模拟还预测了蔗糖在HSA上的类似行为。蔗糖的稳定作用是根据水分子在HSA表面和蔗糖层之间的截留以及HSA和蔗糖之间的直接相互作用来解释的。

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