Hirst J D, Vieth M, Skolnick J, Brooks C L
Department of Molecular Biology, Scripps Research Institute, La Jolla, CA 92037, USA.
Protein Eng. 1996 Aug;9(8):657-62. doi: 10.1093/protein/9.8.657.
The leucine zipper structure is adopted by one family of the coiled coil proteins. Leucine zippers have a characteristic leucine repeat: Leu-X6-Leu-X6-Leu-X6-Liu (where X may be any residue). However, many sequences have the leucine repeat, but do not adopt the leucine zipper structure (we shall refer to these as non-zippers). We have found and analyzed residue pair patterns that allow one to identify correctly 90% of leucine zippers and 97% of non-zippers. Simpler analyses, based on the frequency of occurrence of residues at certain positions, specify, at most, 65% of zippers and 80-90% of non-zippers. Both short and long patterns contribute to the successful discrimination of leucine zippers from non-zippers. A number of these patterns involve hydrophobic residues that would be placed on the solvent-exposed surface of the helix, were the sequence to adopt a leucine zipper structure. Thus, an analysis of protein sequences has allowed us to improve discrimination between leucine zippers and non-zippers, and has provided some further insight into the physical factors influencing the leucine zipper structure.
亮氨酸拉链结构为卷曲螺旋蛋白家族中的一类所采用。亮氨酸拉链具有特征性的亮氨酸重复序列:Leu-X6-Leu-X6-Leu-X6-Leu(其中X可以是任何残基)。然而,许多序列具有亮氨酸重复序列,但并不采用亮氨酸拉链结构(我们将这些称为非拉链序列)。我们已经发现并分析了残基对模式,这些模式能够正确识别90%的亮氨酸拉链和97%的非拉链序列。基于特定位置残基出现频率的更简单分析,最多只能识别65%的拉链序列和80 - 90%的非拉链序列。短模式和长模式都有助于成功区分亮氨酸拉链和非拉链序列。其中一些模式涉及疏水残基,如果该序列采用亮氨酸拉链结构,这些疏水残基将位于螺旋的溶剂暴露表面。因此,对蛋白质序列的分析使我们能够改进对亮氨酸拉链和非拉链序列的区分,并为影响亮氨酸拉链结构的物理因素提供了一些进一步的见解。