Liljeqvist G, Paléus S, Braunitzer G
J Mol Evol. 1982;18(2):102-8. doi: 10.1007/BF01810828.
Hagfish hemoglobin has three main components, one of which is Hb III. It is monomeric and consists of 148 amino acid residues (M = 17 350). Its complete primary structure, previously published, is discussed here. The proximal amino acid (F8) of the heme linkage is histidine as always in the hemoglobins, but the regularly expected distal histidine E7 is substituted by glutamine. This substitution, leading to a new kind of heme linkage, has hitherto only been demonstrated in opossum hemoglobin. It is suggested that E7, Gln, is directed out of the heme pocket, and that the adjacent Ell, Ile, is directed toward the inside of the pocket, giving the distal heme contact instead of histidine. Myxine Hb III has an additional tail of 9 amino acid residues at its N-terminal end, as has the hemoglobin of Lampetra fluviatilis. The genetic codes of Myxine and Lampetra hemoglobins show 117 differences, in spite of many morphological resemblances between hagfish and lamprey. Their primary hemoglobin structures show differences substantial enough to be compatible with the divergence of the two families some 400-500 million years ago.
盲鳗血红蛋白有三个主要成分,其中之一是血红蛋白III。它是单体,由148个氨基酸残基组成(分子量为17350)。这里讨论其先前已发表的完整一级结构。血红素连接的近端氨基酸(F8)一如既往地是组氨酸,但通常预期的远端组氨酸E7被谷氨酰胺取代。这种导致新型血红素连接的取代迄今仅在负鼠血红蛋白中得到证实。有人认为E7(谷氨酰胺)指向血红素口袋外部,而相邻的E11(异亮氨酸)指向口袋内部,从而提供远端血红素接触而非组氨酸。盲鳗血红蛋白III在其N末端有一个额外的由9个氨基酸残基组成的尾巴,七鳃鳗的血红蛋白也是如此。尽管盲鳗和七鳃鳗在形态上有许多相似之处,但盲鳗和七鳃鳗血红蛋白的遗传密码显示有117处差异。它们的主要血红蛋白结构显示出足够大的差异,与大约4亿至5亿年前这两个家族的分化相吻合。