Singer G A, Kleinschmidt T, Pettigrew J D, Braunitzer G
Max-Planck-Institut für Biochemie, Abteilung Proteinchemie, Martinsried bei München.
Biol Chem Hoppe Seyler. 1991 Dec;372(12):1089-95. doi: 10.1515/bchm3.1991.372.2.1089.
The Australian ghost bat (Macroderma gigas, Microchiroptera) has two hemoglobin components in the ratio 3:2. They share identical beta-chains and differ by three replacements in the alpha-chains. The primary structures of all three chains are presented. They could be separated by high-performance liquid chromatography. The sequences were determined by automatic liquid and gas phase Edman degradation of the chains and their tryptic peptides. The two alpha-chains show 18 and 19 and the beta-chains 15 exchanges compared to human alpha- and beta-chains, respectively. The divergent evolution of Macroderma gigas and Megaderma lyra, two representatives of the family Megadermatidae, is discussed. An influence of replacements at functionally important positions on the hemoglobin oxygen affinity seems unlikely.
澳大利亚鬼蝠(巨耳蝠属,微翼手亚目)有两种血红蛋白成分,比例为3:2。它们共享相同的β链,α链有三个替换差异。给出了所有三条链的一级结构。它们可以通过高效液相色谱法分离。序列通过对链及其胰蛋白酶肽段进行自动液相和气相埃德曼降解来确定。与人类的α链和β链相比,两条α链分别有18个和19个替换,β链有15个替换。讨论了巨耳蝠科的两个代表物种——澳大利亚鬼蝠和大耳蝠的趋异进化。功能重要位置的替换对血红蛋白氧亲和力的影响似乎不大。