Marqusee S, Sauer R T
Department of Biology, Massachusetts Institute of Technology, Cambridge 02139, USA.
Protein Sci. 1994 Dec;3(12):2217-25. doi: 10.1002/pro.5560031207.
In the N-terminal domain of lambda repressor, the Asp 14 side chain forms an intrahelical, hydrogen bond/salt bridge with the Arg 17 side chain and a tertiary hydrogen bond with the Ser 77 side chain. By measuring the stabilities to urea denaturation of the wild-type N-terminal domain and variants containing single, double, and triple alanine substitutions at positions 14, 17, and 77, the side-chain interaction energies, the coupling energy between interactions, and the intrinsic effects of each wild-type side chain on protein stability have been estimated. These studies indicate that the Asp 14-Arg 17 and Asp 14-Ser 77 interactions are stabilizing by roughly 0.8 and 1.5 kcal/mol, respectively, but that Asp 14, by itself, is destabilizing by roughly 0.9 kcal/mol. We also show that a peptide model of alpha-helix 1, which contains Asp 14 and Arg 17, forms a reasonably stable, monomeric helix in solution and responds to alanine mutations at positions 14 and 17 in the fashion expected from the intact protein studies. These studies suggest that it is possible to view the stability effects of mutations in intact proteins in a hierarchical fashion, with the stability of units of secondary structure being distinguishable from the stability of tertiary structure.
在λ阻遏物的N端结构域中,天冬氨酸14的侧链与精氨酸17的侧链形成螺旋内氢键/盐桥,并与丝氨酸77的侧链形成三级氢键。通过测量野生型N端结构域以及在14、17和77位含有单个、双个和三个丙氨酸取代的变体对尿素变性的稳定性,估算了侧链相互作用能、相互作用之间的耦合能以及每个野生型侧链对蛋白质稳定性的内在影响。这些研究表明,天冬氨酸14-精氨酸17和天冬氨酸14-丝氨酸77相互作用分别使稳定性增加约0.8和1.5千卡/摩尔,但天冬氨酸14本身会使稳定性降低约0.9千卡/摩尔。我们还表明,包含天冬氨酸14和精氨酸17的α螺旋1的肽模型在溶液中形成相当稳定的单体螺旋,并以完整蛋白质研究预期的方式响应14和17位的丙氨酸突变。这些研究表明,有可能以分层方式看待完整蛋白质中突变的稳定性效应,二级结构单元的稳定性与三级结构的稳定性是可区分的。