首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Deprotonation of a Single Amino Acid Residue Induces Significant Stability in an alpha-Helical Heteropeptide
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Deprotonation of a Single Amino Acid Residue Induces Significant Stability in an alpha-Helical Heteropeptide

机译:单个氨基酸残基的去质子化在α-螺旋异常肽中诱导显着的稳定性

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Stability of secondary structural elements is an integral component of a structurally stable protein. Presence of protons in the residue sequence and their immediate environment play a significant role in conformational stability. In this study, we show that removing a proton from a single amino acid residue significantly increases the stability of an a helical heteropeptide in comparison with the unprotonated form. Far-UV circular dichroism spectroscopy, fluorescence spectroscopy, fluorescence energy transfer measurements, and over 10 mu s of all-atom molecular dynamics simulations are used to provide an atomically detailed 0 characterization of this event. There is a single histidine residue in the studied alpha-helical peptide sequence toward the N-terminal that interacts with a tryptophan located four residues away and quenches the fluorescence when protonated. Removing a proton from this histidine residue dequenches the tryptophan fluorescence and contributes to a significant increase in the helix stability. Atomically detailed analysis of individual residue conformations shows that the protonated histidine tends to be in closer proximity to the tryptophan, which correlates with higher helix content in the N and C termini and lower helix content in the central region of the peptide. In the presence of a neutral histidine, when tryptophan fluorescence is no longer quenched and histidine moves further away from tryptophan, the helix content remains mostly unchanged in the N-and-C termini and significantly increases in the central region. Our results strongly suggest that interactions of the tryptophan with a protonated histidine downregulate the helix population in the central segment of the helical structure compared to a neutral histidine residue. Upregulation of helix population of the central segment of this alpha-helical heteropeptide in the presence of a neutral histidine residue significantly increases the peptide structural stability.
机译:二次结构元素的稳定性是结构稳定的蛋白质的整体组分。残留序列中质子的存在及其直接环境在构象稳定性中起着重要作用。在该研究中,我们表明,与单个氨基酸残基中除去质子,显着增加了与未促进的形式相比的螺旋异常肽的稳定性。 FAR-UV圆形二色性光谱,荧光光谱,荧光能量转移测量和超过10μs的全原子分子动力学模拟用于提供对该事件的原子详述0表征。在研究的α-螺旋肽序列中存在单个组氨酸残基朝向N-末端与位于四个残基的色氨酸相互作用并在质子化时淬灭荧光。从该组氨酸残留物中除去质子,将色氨酸荧光切割并有助于显着增加螺旋稳定性。对个体残留件的原子详细分析表明,质子化的组氨酸趋于更接近色氨酸,其与N和C Termini中的较高螺旋含量与肽的中心区域中的螺旋含量相关联。在中性组织存在下,当色氨酸荧光不再淬火并且组氨酸进一步远离色氨酸时,螺旋含量在N-an-C Termini中仍然不变,并且中央区域显着增加。我们的结果强烈表明,与中性组氨酸残基相比,色氨酸与质子化组氨酸的相互作用下调了螺旋结构的中心区段中的螺旋群。在中性组氨酸残基存在下,在存在中性组氨酸残基存在下该α-螺旋状肽的中心区段的螺旋群显着增加了肽结构稳定性。

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