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Effects of charged amino acids at b and c heptad positions on specificity and stability of four-chain coiled coils

机译:b和c七肽位上带电荷的氨基酸对四链卷曲线圈特异性和稳定性的影响

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摘要

An understanding of the balance of chemical forces responsible for protein stability and specificity of structure is essential for the success of efforts in protein design. Specifically, electrostatic interactions between charged amino acids have been explored extensively to understand the contribution of this force to protein stability. Much research on the importance of electrostatic interactions as specificity and stability determinants in two-stranded coiled coils has been done, but there remains significant controversy about the magnitude of the attractive forces using such systems. We have developed a four-stranded coiled-coil system with charged residues incorporated at b and c heptad positions to explore the role of charge interactions. Here, we test quantitatively the effects of varying sidechain length on the magnitude of such electrostatic interactions. We synthesized peptides containing either aspartate or ornithine at both b and c heptad positions and tested their ability to self-associate and to hetero-associate with one another and with peptides containing glutamate or lysine at the same positions. We find that interactions between glutamate and either lysine or ornithine are more favorable than the corresponding interactions involving aspartate. In each case, charged interactions provide additional stability to coiled coils, although helix propensity effects may play a significant role in determining the overall stability of these structures.
机译:了解负责蛋白质稳定性和结构特异性的化学力之间的平衡对于成功进行蛋白质设计至关重要。具体而言,已广泛研究带电氨基酸之间的静电相互作用,以了解该力对蛋白质稳定性的影响。已经进行了许多关于静电相互作用作为双链卷曲线圈中特异性和稳定性决定因素的重要性的研究,但是关于使用此类系统的吸引力大小仍存在重大争议。我们开发了一种四链螺旋线圈系统,在b和c七键位置结合了带电残基,以探索电荷相互作用的作用。在这里,我们定量测试了不同侧链长度对此类静电相互作用的影响。我们合成了在b和c七肽位置均含有天冬氨酸或鸟氨酸的肽,并测试了它们彼此自我结合和杂合的能力,以及在相同位置含有谷氨酸或赖氨酸的肽的合成能力。我们发现,谷氨酸和赖氨酸或鸟氨酸之间的相互作用比涉及天冬氨酸的相应相互作用更有利。在每种情况下,尽管螺旋倾向效应可能会在确定这些结构的整体稳定性方面发挥重要作用,但带电相互作用为盘绕线圈提供了额外的稳定性。

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