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首页> 外文期刊>Journal of Bioactive and Compatible Polymers >Electrostatic Interactions in Leucine Zippers: Effects on Stability and Specificity of Interaction
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Electrostatic Interactions in Leucine Zippers: Effects on Stability and Specificity of Interaction

机译:亮氨酸拉链中的静电相互作用:对相互作用的稳定性和特异性的影响

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Using a set of natural coiled-coil proteins as models, a series of recombinant proteins were designed and expressed in E. coli. These proteins contain a consensus coiled-coil sequence as a framework into which were incorporated positively or negatively charged residues at selected positions. A mixed-site genetic strategy was used to generate DNA fragments encoding over 4,000 different combinations of charged residues within the coiled-coil motif. A subset of these genes was used to produce recombinant coiled-coil proteins with well-defined variations in charge pattern and composition. Variants of each sequence containing a unique cysteine at the C-terminus were oxidized to the disulfide-linked dimer, and characterization of their physical properties support the proposed parallel orientation of protein chains. In all cases, equilibrium populations of dimeric and tetrameric structures were observed under physiological conditions, with dimer-to-tetramer dissociation constants in the range of 50-190 #mu#M. Significant differences in complex stability were seen with different charge patterns. Contrary to expectations, no linear relationship was observed between net ionic interaction and any measure of complex stability arguing that a more subtle set of rules governs these interactions. This work has revealed two important aspects of coiled-coil interactions: the observed relation-ship between charge interactions and complex stability shows considerable nonlinearity, and the presence of higher order interactions in coiled-coil motifs may be more widespread than is currently suspected. The relationships described here have broad relevance, especially in the areas of protein folding, protein-based materials design, antibody-antigen and receptor-ligand interactions, and rational drug design.
机译:使用一组天然卷曲螺旋蛋白作为模型,设计了一系列重组蛋白并在大肠杆菌中表达。这些蛋白质包含共有卷曲螺旋序列作为框架,在选定位置将带正电荷或负电荷的残基掺入其中。使用混合位点遗传策略来生成DNA片段,该片段编码卷曲螺旋基序内带电残基的4,000多种不同组合。这些基因的一个子集用于产生重组的卷曲螺旋蛋白,其电荷模式和组成具有明确的变化。在C端含有独特半胱氨酸的每个序列的变体都被氧化成二硫键连接的二聚体,其物理性质的表征支持了蛋白质链的平行排列。在所有情况下,在生理条件下均观察到二聚和四聚结构的平衡群体,二聚体至四聚体的解离常数为50-190#mu#M。在不同的充电模式下,观察到复杂稳定性的显着差异。与预期相反,在净离子相互作用与任何复杂稳定性度量之间均未观察到线性关系,理由是更精细的规则控制这些相互作用。这项工作揭示了盘绕线圈相互作用的两个重要方面:电荷相互作用和复杂稳定性之间观察到的关系显示出相当大的非线性,并且在盘绕线圈图案中更高阶相互作用的存在可能比目前所怀疑的更为广泛。这里描述的关系具有广泛的相关性,特别是在蛋白质折叠,基于蛋白质的材料设计,抗体-抗原和受体-配体相互作用以及合理的药物设计领域。

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