Hargrave P A, McDowell J H, Feldmann R J, Atkinson P H, Rao J K, Argos P
Vision Res. 1984;24(11):1487-99. doi: 10.1016/0042-6989(84)90311-0.
A topographic model for rhodopsin has been constructed based upon evaluation of rhodopsin's sequence by a secondary structure prediction algorithm as well as chemical and enzymatic modification of rhodopsin in the membrane [Hargrave et al. (1983) Biophys. Struct. Mech. 9, 235-244]. The non-uniform distribution of several amino acids in the primary structure and within the topographic model is discussed. The seven predicted helices were evaluated and each helix was found to have one surface which is much more hydrophobic than the other. Stereoscopic views of a three dimensional model with a functional color-coding scheme incorporating these features are presented. The amino acid sequence of rhodopsin has been compared to other proteins in the Dayhoff Protein Data Bank. No obvious relationship to any other protein sequenced was found. High resolution proton magnetic resonance spectroscopy was used to reinvestigate the structure and relative proportions of rhodopsin's major and minor oligosaccharide chains. One major (Man3GlcNAc3) and two minor (Man4GlcNAc3 and Man5GlcNAc3) were observed.
基于通过二级结构预测算法对视紫红质序列的评估以及视紫红质在膜中的化学和酶促修饰,构建了视紫红质的拓扑模型[哈格雷夫等人(1983年),《生物物理结构与机制》9,235 - 244]。讨论了几种氨基酸在一级结构和拓扑模型中的非均匀分布。对七个预测的螺旋进行了评估,发现每个螺旋都有一个表面比另一个表面疏水性强得多。展示了一个三维模型的立体视图,该模型带有结合了这些特征的功能颜色编码方案。视紫红质的氨基酸序列已与德霍夫蛋白质数据库中的其他蛋白质进行了比较。未发现与任何其他已测序蛋白质有明显关系。使用高分辨率质子磁共振波谱重新研究了视紫红质主要和次要寡糖链的结构及相对比例。观察到一种主要的(甘露糖3 - N - 乙酰葡糖胺3)和两种次要的(甘露糖4 - N - 乙酰葡糖胺3和甘露糖5 - N - 乙酰葡糖胺3)。