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GCN4亮氨酸拉链突变体中双股、三股和四股卷曲螺旋之间的转换。

A switch between two-, three-, and four-stranded coiled coils in GCN4 leucine zipper mutants.

作者信息

Harbury P B, Zhang T, Kim P S, Alber T

机构信息

Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, MA 02115.

出版信息

Science. 1993 Nov 26;262(5138):1401-7. doi: 10.1126/science.8248779.

Abstract

Coiled-coil sequences in proteins consist of heptad repeats containing two characteristic hydrophobic positions. The role of these buried hydrophobic residues in determining the structures of coiled coils was investigated by studying mutants of the GCN4 leucine zipper. When sets of buried residues were altered, two-, three-, and four-helix structures were formed. The x-ray crystal structure of the tetramer revealed a parallel, four-stranded coiled coil. In the tetramer conformation, the local packing geometry of the two hydrophobic positions in the heptad repeat is reversed relative to that in the dimer. These studies demonstrate that conserved, buried residues in the GCN4 leucine zipper direct dimer formation. In contrast to proposals that the pattern of hydrophobic and polar amino acids in a protein sequence is sufficient to determine three-dimensional structure, the shapes of buried side chains in coiled coils are essential determinants of the global fold.

摘要

蛋白质中的卷曲螺旋序列由含有两个特征性疏水位置的七肽重复序列组成。通过研究GCN4亮氨酸拉链的突变体,对这些埋藏的疏水残基在确定卷曲螺旋结构中的作用进行了研究。当一组埋藏残基发生改变时,会形成二螺旋、三螺旋和四螺旋结构。四聚体的X射线晶体结构显示为平行的四链卷曲螺旋。在四聚体构象中,七肽重复序列中两个疏水位置的局部堆积几何结构相对于二聚体发生了反转。这些研究表明,GCN4亮氨酸拉链中保守的埋藏残基指导二聚体的形成。与蛋白质序列中疏水和极性氨基酸的模式足以确定三维结构的观点相反,卷曲螺旋中埋藏侧链的形状是整体折叠的关键决定因素。

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