Harbury P B, Kim P S, Alber T
Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, Massachusetts 02115.
Nature. 1994 Sep 1;371(6492):80-3. doi: 10.1038/371080a0.
Subunit oligomerization in many proteins is mediated by short coiled-coil motifs. These motifs share a characteristic seven-amino-acid repeat containing hydrophobic residues at the first (a) and fourth (d) positions. Despite this common pattern, different sequences form two-, three- and four-stranded helical ropes. We have investigated the basis for oligomer choice by characterizing variants of the GCN4 leucine-zipper dimerization domain that adopt trimeric or tetrameric structures in response to mutations at the a and d positions. We now report the high-resolution X-ray crystal structure of an isoleucine-containing mutant that folds into a parallel three-stranded, alpha-helical coiled coil. In contrast to the dimer and tetramer structures, the interior packing of the trimer can accommodate beta-branched residues in the most preferred rotamer at both hydrophobic positions. Compatibility of the shape of the core amino acids with the distinct packing spaces in the two-, three- and four-stranded conformations appears to determine the oligomerization state of the GCN4 leucine-zipper variants.
许多蛋白质中的亚基寡聚化是由短的卷曲螺旋基序介导的。这些基序共享一个特征性的七氨基酸重复序列,在第一(a)和第四(d)位置含有疏水残基。尽管有这种共同模式,但不同序列会形成两链、三链和四链螺旋束。我们通过表征GCN4亮氨酸拉链二聚化结构域的变体来研究寡聚体选择的基础,这些变体在a和d位置发生突变时会形成三聚体或四聚体结构。我们现在报告一种含异亮氨酸的突变体的高分辨率X射线晶体结构,该突变体折叠成平行的三链α螺旋卷曲螺旋。与二聚体和四聚体结构不同,三聚体的内部堆积在两个疏水位置都能容纳处于最优选旋转异构体状态的β分支残基。核心氨基酸的形状与两链、三链和四链构象中不同堆积空间的兼容性似乎决定了GCN4亮氨酸拉链变体的寡聚化状态。