Smith J S, Scholtz J M
Department of Medical Biochemistry and Genetics, Texas A&M University, College Station 77843-1114, USA.
Biochemistry. 1998 Jan 6;37(1):33-40. doi: 10.1021/bi972026h.
The energetics of the interaction between the polar side chains of glutamate or aspartate with lysine and glutamate with histidine have been determined using a model alanine-based peptide helix. An evaluation of the effects of NaCl and pH on the interactions between these acidic and basic residues in several different orientations and spacings in an alpha-helical peptide has been made. For many of the peptides, we find a considerable interaction between the polar side chains. In general, the shorter side chains show stronger interactions, but there are more restrictions on the precise geometry of the interactions as dictated by the spacing and orientation of the polar residues in the alpha-helical peptide. The energetics of the interaction between the fully-charged ion pairs can be diminished by added salt, but the interaction is not completely screened even at 2.5 M NaCl. The strength of the interaction between a charged and neutral side chain is not as sensitive to the ionic strength of the solution, suggesting that solvent-exposed hydrogen bonds are forming. All the interactions between the polar residues employed here stabilize helix formation, suggesting that solvent-exposed ion pairs and hydrogen bonds can contribute to the conformational stability of proteins and peptides.
利用基于丙氨酸的肽螺旋模型,已确定了谷氨酸或天冬氨酸的极性侧链与赖氨酸之间以及谷氨酸与组氨酸之间相互作用的能量学。已对NaCl和pH对α-螺旋肽中这些酸性和碱性残基在几种不同取向和间距下相互作用的影响进行了评估。对于许多肽,我们发现极性侧链之间存在相当大的相互作用。一般来说,较短的侧链显示出更强的相互作用,但正如α-螺旋肽中极性残基的间距和取向所决定的那样,相互作用的精确几何结构受到更多限制。添加盐可降低完全带电离子对之间相互作用的能量学,但即使在2.5M NaCl时,这种相互作用也未被完全屏蔽。带电与中性侧链之间相互作用的强度对溶液的离子强度不太敏感,这表明正在形成溶剂暴露的氢键。这里所采用的极性残基之间的所有相互作用均稳定螺旋的形成,这表明溶剂暴露的离子对和氢键可有助于蛋白质和肽的构象稳定性。