Frossard P
Biochim Biophys Acta. 1982 Jun 24;704(3):535-41. doi: 10.1016/0167-4838(82)90077-2.
The erythrocruorin of Eisenia fetida can be dissociated partially into its principal subunits, the putative one-twelfths of the molecule and smaller subunits, by three different methods: freezing and thawing (Af), exposure to alkaline pH (Aa) and aging (Ao). The isolated subunits possess a relative molecular mass of 310,000 +/- 20,000 by gel filtration and their SDS-polyacrylamide gel electrophoretic patterns are identical to (Af) or slightly different from (Aa, Ao) that of the erythrocruorin. The absorption spectra and Hill constant h of the principal subunit Af correspond to the values of the whole erythrocruorin in the state of low cooperativity, which results from freezing and thawing, exposure to alkaline pH, and aging. Electron microscopic studies of the principal subunits and of the 'treated' erythrocruorin showed that their dimensions had increased relative to the native erythrocruorin: a diameter of 9 nm vs. 8.5 nm and (26.4 +/- 0.4) X (18.3 +/- 0.4) nm vs. 25.0 X 16.5 nm, respectively. Erythrocruorin reconstituted from the Af subunits possessed the dimensions (26.6 +/- 0.4) X (18.6 +/- 0.4) nm. Based on the subunit model of Eisenia erythrocruorin proposed previously it is suggested that there can exist an association-dissociation equilibrium between the principal subunits, smaller subunits, and the erythrocruorin when it is in the state of low cooperativity, but not when it is in its native, high-cooperativity state.
通过三种不同方法可将赤子爱胜蚓的蚯蚓血红蛋白部分解离成其主要亚基、假定的分子十二分之一亚基和较小亚基:冻融(Af)、暴露于碱性pH值(Aa)和老化(Ao)。通过凝胶过滤,分离出的亚基相对分子质量为310,000±20,000,其SDS-聚丙烯酰胺凝胶电泳图谱与蚯蚓血红蛋白的图谱相同(Af)或略有不同(Aa、Ao)。主要亚基Af的吸收光谱和希尔常数h对应于冻融、暴露于碱性pH值和老化导致的低协同性状态下整个蚯蚓血红蛋白的值。对主要亚基和“处理过的”蚯蚓血红蛋白的电子显微镜研究表明,相对于天然蚯蚓血红蛋白,它们的尺寸有所增加:直径分别为9 nm对8.5 nm以及(26.4±0.4)×(18.3±0.4)nm对25.0×16.5 nm。由Af亚基重构的蚯蚓血红蛋白尺寸为(26.6±0.4)×(18.6±0.4)nm。基于先前提出的赤子爱胜蚓蚯蚓血红蛋白亚基模型,有人提出,当蚯蚓血红蛋白处于低协同性状态时,主要亚基、较小亚基和蚯蚓血红蛋白之间可能存在缔合-解离平衡,但在其天然的高协同性状态下则不存在。