Hurrell J G, Nicola N A, Broughton W J, Dilworth M J, Minasian E, Leach S J
Eur J Biochem. 1976 Jul 1;66(2):389-99. doi: 10.1111/j.1432-1033.1976.tb10528.x.
Circular dichroism studies on leghaemoglobins from snake bean, lupin, serradella and other plants show that, in common with soybean (reported earlier) they have a similar overall polypeptide chain conformation and haem environment and orientation. Immunochemical studies, on the other hand, suggest that the antigenic determinants on the surface of the leghaemoglobins vary considerably. Thus, firstly the alpha-helix content of the leghaemoglobins as a class is very similar (60-65%) and approaches that of the myoglobins, secondly, the sign, magnitude and shape of their circular dichroism spectra in the near ultraviolet, Soret and visible regions suggest close similarities in the environment and orientation of a structurally important tryptophan residue and of the haem moiety, and thirdly, there is comparatively weak haem-protein interaction. The extent of immuno cross-reactivity was found to be best deomonstrated using the Farr radioimmunoassay procedure. The results were (a) 5 leghaemoglobins from one plant (soybean) crossreacted completely but with varying affinities. (b) The extent of cross reactivity between leghaemoglobins from different plants was compared to that within a single plant; the reaction of antiserum to a soybean leghaemoglobin with a serradella leghaemoglobin was weak, with a snake bean leghaemoglobin still weaker (and incomplete) while lupin leghaemoglobins showed no cross reactivity at all. (c) The "rapid" attenuation of cross reactivity among different plant leghaemoglobins is explicable in terms of the extensive amino acid substitutions which have been demonstrated in the literature and in the present studies. (d) In view of this rapid divergence it is not surprising that sperm whale and horse heart myoglobins showed no cross reactivity with soybean leghaemoglobins. In summary, amino acid substitutions in the leghaemoglobin family are conformationally but not immunochemically conservative.
对来自蛇豆、羽扇豆、锯齿雀麦和其他植物的豆血红蛋白进行的圆二色性研究表明,与大豆(先前报道)一样,它们具有相似的整体多肽链构象、血红素环境和取向。另一方面,免疫化学研究表明,豆血红蛋白表面的抗原决定簇差异很大。因此,首先,作为一个类别,豆血红蛋白的α-螺旋含量非常相似(60-65%),接近肌红蛋白的α-螺旋含量;其次,它们在近紫外、索雷特和可见光区域的圆二色性光谱的符号、大小和形状表明,结构上重要的色氨酸残基和血红素部分的环境和取向非常相似;第三,血红素与蛋白质的相互作用相对较弱。发现使用Farr放射免疫分析程序能最好地证明免疫交叉反应的程度。结果如下:(a)来自一种植物(大豆)的5种豆血红蛋白完全交叉反应,但亲和力不同。(b)比较了不同植物的豆血红蛋白之间的交叉反应程度与同一植物内的交叉反应程度;抗血清与大豆豆血红蛋白和锯齿雀麦豆血红蛋白的反应较弱,与蛇豆豆血红蛋白的反应更弱(且不完全),而羽扇豆豆血红蛋白则完全没有交叉反应。(c)不同植物豆血红蛋白之间交叉反应的“快速”减弱可以用文献和本研究中已证明的广泛氨基酸取代来解释。(d)鉴于这种快速分化,抹香鲸和马心肌红蛋白与大豆豆血红蛋白没有交叉反应并不奇怪。总之,豆血红蛋白家族中的氨基酸取代在构象上是保守的,但在免疫化学上不是保守的。