Ilan E, David M M, Daniel E
Biochemistry. 1981 Oct 13;20(21):6190-4. doi: 10.1021/bi00524a043.
The subunit structure of erythrocruorin from the crustacean Caenestheria inopinata was studied. The native protein was found to have a sedimentation coefficient of 12.0 S and a molecular weight, as determined by sedimentation equilibrium, of 302,000. Iron and heme determinations gave 0.346 and 3.98% corresponding to minimal molecular weights of 16,100 and 15,500, respectively. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis gave one band with mobility corresponding to a molecular weight of 30,000. The molecular weight of the polypeptide chain was determined to be 30,500 by sedimentation equilibrium in 6 M guanidine hydrochloride and 0.1 M 2-mercaptoethanol. Dissociation of the 12S molecule was observed at acidic and alkaline pH. A dissociation species of 2.7 S was isolated and its molecular weight determined to be 28,000 by sedimentation equilibrium. On a molecular weight basis, the native molecule is composed of ten 2.7S subunits, each of which consists of a single polypeptide chain carrying two hemes. We propose a model for the molecule composed of ten spheres, each representing a 2.7S subunit, arranged in two layers stacked in an eclipsed orientation, in five spheres of each layer occupying the vertices of a regular pentagon. Support for this arrangement is provided by a comparison of projections of the model with molecular profiles seen in the electron microscope.
对甲壳类动物无斑新米虾(Caenestheria inopinata)的血红细胞素的亚基结构进行了研究。发现天然蛋白质的沉降系数为12.0 S,通过沉降平衡测定其分子量为302,000。铁和血红素的测定结果分别为0.346%和3.98%,对应的最小分子量分别为16,100和15,500。十二烷基硫酸钠-聚丙烯酰胺凝胶电泳显示出一条迁移率对应分子量为30,000的条带。在6 M盐酸胍和0.1 M 2-巯基乙醇中通过沉降平衡测定多肽链的分子量为30,500。在酸性和碱性pH条件下观察到12S分子的解离。分离出一种2.7 S的解离产物,通过沉降平衡测定其分子量为28,000。以分子量计,天然分子由十个2.7S亚基组成,每个亚基由一条携带两个血红素的单一多肽链组成。我们提出了一个由十个球体组成的分子模型,每个球体代表一个2.7S亚基,以重叠取向排列成两层,每层五个球体占据正五边形的顶点。通过将模型的投影与电子显微镜中看到的分子轮廓进行比较,为这种排列提供了支持。