Hombrados I, Rodewald K, Neuzil E, Braunitzer G
Biochimie. 1983 Apr-May;65(4-5):247-57. doi: 10.1016/s0300-9084(83)80276-4.
Lampreys belong to the class of Cyclostomata; practically no evolution of these Vertebrates can be noted since Paleozoïc times; lampreys thus appear as a choice material for studying several problems in the field of biochemical evolution. Several monomeric haemoglobins can be characterized in the erythrocytes of the sea lamprey (Petromyzon marinus). The major constituent was isolated by chromatography, and submitted to tryptic digestion; soluble tryptic peptides were separated by gel filtration into 5 fractions; the peptides of each fraction were isolated either by Dowex-50 chromatography or by HPLC; the insoluble core was oxidized and submitted to HPLC fractionation. The primary structure of the whole chain and of the purified tryptic peptides was determined using automatic sequencing; alignment of the peptides was achieved by homology with the previously established covalent structure of the globin of Lampetra fluviatilis. The sequence we established confirms the crystallographic data of Hendrickson and Love. Globin/haem contacts are discussed; a tentative explanation of the absence of tetramerization can be proposed after comparison with the aminoacid residues involved in alpha 1 beta 1 and alpha 1 beta 2 contacts. Petromyzon globin differs at three locations (Thr/Ser3, Leu/Met58, Thr/Ser60) from Lampetra fluviatilis globin. The monomeric chain of another Cyclostomata Myxine glutinosa, differs more considerably (88 residues). Our results corroborate recent paleontologic data which favour the separation of lampreys from hagfishes; Cyclostomata cannot be considered as a monophylic group. Finally, there is a closer relation between lamprey globin and alpha chains than between this monomeric globin and beta chains, and furthermore apomyoglobins of higher vertebrates.
七鳃鳗属于圆口纲;自古生代以来,这些脊椎动物几乎没有进化迹象;因此,七鳃鳗似乎是研究生物化学进化领域若干问题的理想材料。在海七鳃鳗(海七鳃鳗)的红细胞中可以鉴定出几种单体血红蛋白。主要成分通过色谱法分离,并进行胰蛋白酶消化;可溶性胰蛋白酶肽通过凝胶过滤分离成5个组分;每个组分的肽通过Dowex - 50色谱法或高效液相色谱法分离;不溶性核心被氧化并进行高效液相色谱分离。使用自动测序法确定了整条链和纯化的胰蛋白酶肽的一级结构;通过与先前建立的河七鳃鳗珠蛋白的共价结构进行同源性比对来实现肽段的比对。我们确定的序列证实了亨德里克森和洛夫的晶体学数据。讨论了珠蛋白/血红素的接触;在与参与α1β1和α1β2接触的氨基酸残基进行比较后,可以对缺乏四聚化现象提出一个初步解释。海七鳃鳗珠蛋白在三个位置(苏氨酸/丝氨酸3、亮氨酸/甲硫氨酸58、苏氨酸/丝氨酸60)与河七鳃鳗珠蛋白不同。另一种圆口纲动物盲鳗的单体链差异更大(88个残基)。我们的结果证实了最近支持七鳃鳗与盲鳗分离的古生物学数据;圆口纲不能被视为一个单系类群。最后,七鳃鳗珠蛋白与α链之间的关系比这种单体珠蛋白与β链之间的关系更密切,而且与高等脊椎动物的脱辅基肌红蛋白的关系也更密切。