Parker W, Song P S
Department of Chemistry, University of Nebraska, Lincoln 68588.
J Biol Chem. 1990 Oct 15;265(29):17568-75.
Helical regions in many tetrapyrrole proteins are highly amphiphilic, one side interacting with a hydrophobic core and another side interacting with the polar solvent. The mean helical hydrophobic moment is a measure of amphiphilicity of a helix. Helical regions in myoglobin, the alpha and beta subunits of C-phycocyanin, and cytochrome c can be distinguished from nonhelical regions by use of a hydrophobic moment analysis. 24 of 27 (89%) of the helical regions in these proteins were located by this analysis. Calculations were also performed on chymotrypsin, ribonuclease, and papain, which do not possess as pronounced a hydrophobic core as the tetrapyrrole-containing proteins. Less than 50% of the helical regions were correctly located, indicating a lack of amphiphilicity in the helices of these proteins. The hydrophobic moment analysis was also used to predict helical regions in phytochrome, the ubiquitous photoreceptor in plants. Additionally, this analysis is used to quickly locate internal hydrophilic residues which may be functionally important. The distribution of hydrophobic moments from a random sequence was determined so that qualitative and to some extent quantitative comparisons between different amphiphilic helices may be made.
许多四吡咯蛋白中的螺旋区域具有高度两亲性,一侧与疏水核心相互作用,另一侧与极性溶剂相互作用。平均螺旋疏水矩是衡量螺旋两亲性的一个指标。通过疏水矩分析,可以将肌红蛋白、C-藻蓝蛋白的α和β亚基以及细胞色素c中的螺旋区域与非螺旋区域区分开来。通过这种分析确定了这些蛋白质中27个螺旋区域中的24个(89%)。还对胰凝乳蛋白酶、核糖核酸酶和木瓜蛋白酶进行了计算,这些蛋白质不像含四吡咯的蛋白质那样具有明显的疏水核心。不到50%的螺旋区域被正确定位,这表明这些蛋白质的螺旋缺乏两亲性。疏水矩分析还用于预测植物中普遍存在的光受体——光敏色素中的螺旋区域。此外,该分析用于快速定位可能具有重要功能的内部亲水残基。确定了随机序列的疏水矩分布,以便对不同的两亲性螺旋进行定性和一定程度的定量比较。