Markl J, Savel A, Decker H, Linzen B
Hoppe Seylers Z Physiol Chem. 1980 May;361(5):649-60. doi: 10.1515/bchm2.1980.361.1.649.
37S hemocyanin isolated from the tarantula Eurypelma californicum was subjected to a variety of fractionation procedures: Electrophoresis in polyacrylamide gels, isoelectrofocusing, and ion exchange chromatography. Single fractions were dissociated at alkaline pH and/or by sodium dodecyl sulfate and the resulting subunits separated by polyacrylamide gel electrophoresis in gradient slab gels followed, in many cases, by quantitative estimation of the subunit bands. In addition, crossed immunoelectrophoresis was employed to analyze the subunit composition. Separation of the native hemocyanin into fractions with different subunit composition was not observed. Also, hemocyanin samples taken from individual spiders showed a strikingly uniform composition. It is concluded that Eurypelma hemocyanin is homogeneous for all practical means. This implies that the seven different polypeptide chains described previously for Eurypelma hemocyanin all take part in the formation of the 24 subunits, 37S oligomeric molecule. By monitoring chromatographic effluents at 280 nm, scanning stained electrophoresis gels and determining peak areas in these experiments and in crossed immunoelectrophoresis, the relative quantities of the seven different polypeptide chains in the whole molecule were determined as follows (number per 37S molecule): 6a, 2b, 2c2, 2c4, 4d, 4e, 4f. The ratio between a and c2 (6:2) is the least well established. Since 7 different polypeptide chains are incorporated, the hexameric molecule cannot represent the basic oligomeric structure in tarantula hemocyanin, but probably the dodekamer. If Eurypelma hemocyanin is incubated with sucrose, partial dissociation occurs, yielding a fragment sedimenting with ca. 28S. This process is reversible. The 28S fragment still contains all subunit species; it is thought to represent a (3 x 6) or closely related structure. The implications of this finding with respect to the symmetry of the native hemocyanin molecule are discussed.
从狼蛛加利福尼亚捕鸟蛛中分离出的37S血蓝蛋白经过了多种分级分离程序:聚丙烯酰胺凝胶电泳、等电聚焦和离子交换色谱法。单个级分在碱性pH下和/或通过十二烷基硫酸钠解离,所得亚基通过梯度平板凝胶中的聚丙烯酰胺凝胶电泳分离,在许多情况下,随后对亚基带进行定量估计。此外,采用交叉免疫电泳分析亚基组成。未观察到天然血蓝蛋白分离成具有不同亚基组成的级分。而且,从单个蜘蛛采集的血蓝蛋白样品显示出惊人的均匀组成。得出的结论是,从所有实际意义上讲,加利福尼亚捕鸟蛛血蓝蛋白是均一的。这意味着先前描述的加利福尼亚捕鸟蛛血蓝蛋白的七条不同多肽链都参与了24个亚基的37S寡聚体分子的形成。通过在280nm处监测色谱流出物、扫描染色的电泳凝胶并确定这些实验和交叉免疫电泳中的峰面积,确定了整个分子中七条不同多肽链的相对量如下(每37S分子的数量):6a、2b、2c2、2c4、4d、4e、4f。a和c2之间的比例(6:2)确定得最不准确。由于掺入了7条不同的多肽链,六聚体分子不可能代表狼蛛血蓝蛋白的基本寡聚结构,而可能是十二聚体。如果将加利福尼亚捕鸟蛛血蓝蛋白与蔗糖一起孵育,会发生部分解离,产生一个沉降系数约为28S的片段。这个过程是可逆的。28S片段仍然包含所有亚基种类;据认为它代表一个(3×6)或密切相关的结构。讨论了这一发现对天然血蓝蛋白分子对称性的影响。