Pinker R J, Lin L, Rose G D, Kallenbach N R
Department of Chemistry, New York University, New York 10003.
Protein Sci. 1993 Jul;2(7):1099-105. doi: 10.1002/pro.5560020704.
The peptide backbones in folded native proteins contain distinctive secondary structures, alpha-helices, beta-sheets, and turns, with significant frequency. One question that arises in folding is how the stability of this secondary structure relates to that of the protein as a whole. To address this question, we substituted the alpha-helix-stabilizing alanine side chain at 16 selected sites in the sequence of sperm whale myoglobin, 12 at helical sites on the surface of the protein, and 4 at obviously internal sites. Substitution of alanine for bulky side chains at internal sites destabilizes the protein, as expected if packing interactions are disrupted. Alanine substitutions do not uniformly stabilize the protein, either in capping positions near the ends of helices or at mid-helical sites near the surface of myoglobin. When corrected for the extent of exposure of each side chain replaced by alanine at a mid-helix position, alanine replacement still has no clear effect in stabilizing the native structure. Thus linkage between the stabilization of secondary structure and tertiary structure in myoglobin cannot be demonstrated, probably because of the relatively small free energy differences between side chains in stabilizing isolated helix. By contrast, about 80% of the variance in free energy observed can be accounted for by the loss in buried surface area of the native residue substituted by alanine. The differential free energy of helix stabilization does not account for any additional variation.
折叠后的天然蛋白质中的肽主链含有独特的二级结构,即α-螺旋、β-折叠和转角,且出现频率较高。蛋白质折叠过程中出现的一个问题是,这种二级结构的稳定性与整个蛋白质的稳定性有何关系。为了解决这个问题,我们在抹香鲸肌红蛋白序列的16个选定位点上替换了α-螺旋稳定型丙氨酸侧链,其中12个位于蛋白质表面的螺旋位点,4个位于明显的内部位点。正如预期的那样,如果堆积相互作用被破坏,在内部位点用丙氨酸取代大的侧链会使蛋白质不稳定。无论是在螺旋末端附近的封端位置,还是在肌红蛋白表面附近的螺旋中间位点,丙氨酸取代都不能一致地稳定蛋白质。当校正丙氨酸取代的每个侧链在螺旋中间位置的暴露程度时,丙氨酸取代在稳定天然结构方面仍然没有明显效果。因此,无法证明肌红蛋白二级结构和三级结构稳定性之间的联系,这可能是因为在稳定孤立螺旋时侧链之间的自由能差异相对较小。相比之下,观察到的自由能约80%的变化可以由被丙氨酸取代的天然残基埋藏表面积的损失来解释。螺旋稳定的微分自由能不能解释任何额外的变化。