Liu Jie, Zheng Qi, Deng Yiqun, Li Qunnu, Kallenbach Neville R, Lu Min
Department of Biochemistry, Weill Medical College of Cornell University, New York, New York 10021, USA.
Biochemistry. 2007 Dec 25;46(51):14951-9. doi: 10.1021/bi701930d. Epub 2007 Dec 4.
Predictive understanding of how the folded, functional shape of a native protein is encoded in the linear sequence of its amino acid residues remains an unsolved challenge in modern structural biology. Antiparallel four-stranded coiled coils are relatively simple protein structures that embody a heptad sequence repeat and rich diversity for tertiary packing of alpha-helices. To explore specific sequence determinants of the lac repressor coiled-coil tetramerization domain, we have engineered a set of buried nonpolar side chains at the a-, d-, and e-positions into the hydrophobic interior of the dimeric GCN4 leucine zipper. Circular dichroism and equilibrium ultracentrifugation studies show that this core variant (GCN4-pAeLV) forms a stable tetrameric structure with a reversible and highly cooperative thermal unfolding transition. The X-ray crystal structure at 1.9 A reveals that GCN4-pAeLV is an antiparallel four-stranded coiled coil of the lac repressor type in which the a, d, and e side chains associate by means of combined knobs-against-knobs and knobs-into-holes packing with a characteristic interhelical offset of 0.25 heptad. Comparison of the side chain shape and packing in the antiparallel tetramers shows that the burial of alanine residues at the e positions between the neighboring helices of GCN4-pAeLV dictates both the antiparallel orientation and helix offset. This study fills in a gap in our knowledge of the determinants of structural specificity in antiparallel coiled coils and improves our understanding of how specific side chain packing forms the teritiary structure of a functional protein.
预测天然蛋白质折叠后的功能形状如何在其氨基酸残基的线性序列中编码,仍然是现代结构生物学中一个尚未解决的难题。反平行四链卷曲螺旋是相对简单的蛋白质结构,体现了七肽序列重复以及α-螺旋三级堆积的丰富多样性。为了探索乳糖阻遏蛋白卷曲螺旋四聚化结构域的特定序列决定因素,我们将一组位于a、d和e位置的埋藏非极性侧链引入二聚体GCN4亮氨酸拉链的疏水内部。圆二色性和平衡超速离心研究表明,这种核心变体(GCN4-pAeLV)形成了一种稳定的四聚体结构,具有可逆且高度协同的热解折叠转变。1.9埃分辨率的X射线晶体结构表明,GCN4-pAeLV是乳糖阻遏蛋白类型的反平行四链卷曲螺旋,其中a、d和e侧链通过旋钮对旋钮和旋钮插入孔的组合堆积方式结合在一起,具有0.25个七肽的特征性螺旋间偏移。对反平行四聚体中侧链形状和堆积的比较表明,在GCN4-pAeLV相邻螺旋之间的e位置埋藏丙氨酸残基决定了反平行方向和螺旋偏移。这项研究填补了我们在反平行卷曲螺旋结构特异性决定因素方面的知识空白,并增进了我们对特定侧链堆积如何形成功能性蛋白质三级结构的理解。