首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >INVESTIGATION OF ELECTROSTATIC INTERACTIONS IN TWO-STRANDED COILED-COILS THROUGH RESIDUE SHUFFLING
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INVESTIGATION OF ELECTROSTATIC INTERACTIONS IN TWO-STRANDED COILED-COILS THROUGH RESIDUE SHUFFLING

机译:渣油堆砌的两层螺旋管中静电相互作用的研究

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The effects of electrostatic interactions on the stability of coiled-coils were investigated using the strategy of shuffling the sequence without changing the overall content of amino acid residues in the peptides. Shuffling the sequence provides peptides with thermodynamically similar unfolded states. Therefore, the unfolded state can be used as a universal reference state in comparing the thermodynamic properties of the folded coiled-coil structure of the peptides, while varying the configuration of ionized groups, that is, changing the types and number of potential electrostatic interactions, The relative stabilities of these states were determined by monitoring the temperature-induced folding/unfolding of the peptides in solutions with different pH and ionic strength by circular dichroism spectroscopy and scanning microcalorimetry. It was found that, in solutions with low ionic strength, ionic pairs contribute significantly to the stability of the coiled-coil conformation, The stability increases with an increase in the number of ionized groups in the peptide upon changing pH from acidic to neutral, In contrast, in the solutions with high ionic strength, the coiled-coil becomes less stable at neutral pH than at acidic pH. Most surprisingly, the increase in Gibbs energy of stabilization of the coiled-coil state with increasing pH at low ionic strength proceeds with a decrease in the enthalpy and entropy of unfolding. This observation can be explained only by hydration of ionized groups upon unfolding of coiled-coils which is associated with significant negative enthalpy and entropy effects. [References: 51]
机译:使用改组序列而不改变肽中氨基酸残基总含量的策略研究了静电相互作用对卷曲螺旋稳定性的影响。对序列进行改组提供了具有热力学相似的未折叠状态的肽。因此,在改变离子化基团的构型,即改变潜在的静电相互作用的类型和数量时,未折叠状态可用作比较肽的折叠卷曲螺旋结构的热力学性质的通用参考状态,这些状态的相对稳定性是通过圆二色光谱和扫描量热法监测温度在不同pH和离子强度的溶液中肽诱导的折叠/解折叠来确定的。发现在低离子强度的溶液中,离子对对卷曲螺旋构象的稳定性有显着贡献。当pH从酸性变为中性时,稳定性随肽中离子化基团数量的增加而增加。相反,在具有高离子强度的溶液中,盘绕线圈在中性pH下的稳定性比在酸性pH下的稳定性差。最令人惊讶的是,在低离子强度下,随着pH值的增加,卷曲螺旋状态稳定的吉布斯能量的增加伴随着展开焓和熵的降低而进行。这种观察只能通过卷曲螺旋展开时电离基团的水合来解释,这与显着的负焓和熵效应有关。 [参考:51]

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