Steer W, Braunitzer G
Hoppe Seylers Z Physiol Chem. 1981 Jan;362(1):59-71. doi: 10.1515/bchm2.1981.362.1.59.
The primary structure of a dimeric insect hemoglobin (erythrocruorin), component CTT IX (Chironomus thummi thummi) was established by automatic sequence analysis. The alignment of the peptides was facilitated by producing only a few large fragments. The primary structure of CTT IX is compared with the human beta-chains and with CTT III. It is discussed, why for the dimeric CTT-hemoglobins only dimerisation can be observed but no tetramerisation. Experiments were done to locate the binding areas between the subunits in the dimeric molecule. Even after blocking of the alpha-NH2-group by cyanate, the stability of the dimeric molecule is not altered. Therefore the binding regions of the CTT-hemoglobins must be different from those of the tetrameric hemoglobins of vertebrates. Our results lead to a quarternary structure different from that of the hemoglobins of mammalians. This structure explains the possibility of dimerisation, but excludes tetramerisation.
通过自动序列分析确定了二聚体昆虫血红蛋白(红血球素)CTT IX 组分(嗜尸摇蚊)的一级结构。仅产生少数几个大片段有助于肽段的比对。将 CTT IX 的一级结构与人类β链以及 CTT III 进行了比较。讨论了为何对于二聚体 CTT 血红蛋白只能观察到二聚化而未观察到四聚化。进行了实验以定位二聚体分子中亚基之间的结合区域。即使在用氰酸盐封闭α-NH₂基团后,二聚体分子的稳定性也未改变。因此,CTT 血红蛋白的结合区域必定与脊椎动物的四聚体血红蛋白不同。我们的结果得出了一种与哺乳动物血红蛋白不同的四级结构。这种结构解释了二聚化的可能性,但排除了四聚化。