Zhu B Y, Zhou N E, Kay C M, Hodges R S
Department of Biochemistry, University of Alberta, Edmonton, Canada.
Protein Sci. 1993 Mar;2(3):383-94. doi: 10.1002/pro.5560020310.
The aim of this study was to examine the differences between hydrophobicity and packing effects in specifying the three-dimensional structure and stability of proteins when mutating hydrophobes in the hydrophobic core. In DNA-binding proteins (leucine zippers), Leu residues are conserved at positions "d," and beta-branched amino acids, Ile and Val, often occur at positions "a" in the hydrophobic core. In order to discern what effect this selective distribution of hydrophobes has on the formation and stability of two-stranded alpha-helical coiled coils/leucine zippers, three Val or three Ile residues were simultaneously substituted for Leu at either positions "a" (9, 16, and 23) or "d" (12, 19, and 26) in both chains of a model coiled coil. The stability of the resulting coiled coils was monitored by CD in the presence of Gdn.HCl. The results of the mutations of Ile to Val at either positions "a" or "d" in the reduced or oxidized coiled coils showed a significant hydrophobic effect with the additional methylene group in Ile stabilizing the coiled coil (delta delta G values range from 0.45 to 0.88 kcal/mol/mutation). The results of mutations of Leu to Ile or Val at positions "a" in the reduced or oxidized coiled coils showed a significant packing effect in stabilizing the coiled coil (delta delta G values range from 0.59 to 1.03 kcal/mol/mutation). Our results also indicate the subtle control hydrophobic packing can have not only on protein stability but on the conformation adopted by the amphipathic alpha-helices. These structural findings correlate with the observation that in DNA-binding proteins, the conserved Leu residues at positions "d" are generally less tolerant of amino acid substitutions than the hydrophobic residues at positions "a."
本研究的目的是在疏水核心中突变疏水基团时,考察疏水性和堆积效应在确定蛋白质三维结构和稳定性方面的差异。在DNA结合蛋白(亮氨酸拉链)中,亮氨酸残基在“d”位置保守,而β-支链氨基酸异亮氨酸和缬氨酸经常出现在疏水核心的“a”位置。为了识别疏水基团的这种选择性分布对双链α-螺旋卷曲螺旋/亮氨酸拉链的形成和稳定性有何影响,在一个模型卷曲螺旋的两条链中,于“a”(9、16和23)或“d”(12、19和26)位置同时用三个缬氨酸或三个异亮氨酸残基取代亮氨酸。在盐酸胍存在的情况下,通过圆二色光谱监测所得卷曲螺旋的稳定性。在还原或氧化的卷曲螺旋中,“a”或“d”位置异亮氨酸突变为缬氨酸的结果显示出显著的疏水效应,异亮氨酸中额外的亚甲基使卷曲螺旋稳定(ΔΔG值范围为0.45至0.88千卡/摩尔/突变)。在还原或氧化的卷曲螺旋中,“a”位置亮氨酸突变为异亮氨酸或缬氨酸的结果显示出在稳定卷曲螺旋方面有显著的堆积效应(ΔΔG值范围为0.59至1.03千卡/摩尔/突变)。我们的结果还表明,疏水堆积不仅对蛋白质稳定性,而且对两亲性α-螺旋所采用的构象都能进行微妙的控制。这些结构发现与以下观察结果相关:在DNA结合蛋白中,“d”位置保守的亮氨酸残基通常比“a”位置的疏水残基对氨基酸取代的耐受性更低。