Davis J, Bennett V
J Biol Chem. 1983 Jun 25;258(12):7757-66.
Brain spectrin tetramer was purified from pig brain membranes in milligram quantities. The tetramer had subunits of Mr = 265,000 (alpha) and Mr = 260,000 (beta), Rs = 21.4 nM, S20,w = 11 S, V = 0.725 ml/g, frictional ratio of 2.9, and calculated molecular weight of 9.7 x 10(5). The subunits were isolated in greater than 95% purity by chromatography on hydroxylapatite in 7 M urea, as described for erythrocyte spectrin (Calvert, R., Bennett, P., Gratzer, W. (1980) Eur. J. Biochem. 107, 355-361). Peptide maps of the subunits revealed few if any common peptides. The subunits were visualized by rotary shadowing as single-stranded flexible rods 100 nm in length with no homodimers by lateral or end association. When the subunits were renatured together, double-stranded tetramers 200 nm in length were formed, as well as higher oligomers. These results indicate that spectrin tetramers are formed by laterally associated alpha,beta dimers attached by head-to-head linkage of each alpha chain with a beta chain. The reassembled subunits regained the ability to increase the low shear viscosity of actin, although isolated alpha or beta subunits were inactive. Hybrid molecules were formed with brain alpha and pig erythrocyte spectrin beta subunit and were visualized as double-stranded rods 100 nm long with no tetramers. 125I-labeled brain alpha chain that was hybridized with erythrocyte beta subunit acquired the ability to bind to ankyrin sites on erythrocyte membranes. 125I-labeled brain alpha chain bound only to beta subunits of erythrocyte and brain spectrin following transfer of these polypeptides to nitrocellulose paper from sodium dodecyl sulfate gels. Affinity-purified antibodies against brain spectrin cross-reacted with both subunits of erythrocyte spectrin and with polypeptides of a similar molecular weight to brain spectrin in membranes of all tissues examined. Cross-reacting polypeptides were localized exclusively in plasma membranes of subcellular fractions from liver. These studies provide strong additional evidence that brain and mammalian erythrocyte spectrin belong to a closely related family of proteins with conserved functions in both subunits.
从猪脑膜中纯化出了毫克量的脑血影蛋白四聚体。该四聚体具有分子量为265,000(α)和260,000(β)的亚基,沉降系数Rs = 21.4 nM,在20℃、水介质中的沉降系数S20,w = 11 S,偏比容V = 0.725 ml/g,摩擦系数为2.9,计算分子量为9.7×10⁵。按照红细胞血影蛋白的方法(卡尔弗特,R.,贝内特,P.,格拉策尔,W.(1980)欧洲生物化学杂志107,355 - 361),通过在7M尿素中进行羟基磷灰石柱层析,以大于95%的纯度分离出了这些亚基。亚基的肽图显示几乎没有共同的肽段。通过旋转投影观察到亚基为单链柔性杆状,长度为100 nm,没有通过侧向或末端缔合形成的同二聚体。当亚基一起复性时,形成了长度为200 nm的双链四聚体以及更高的寡聚体。这些结果表明,血影蛋白四聚体是由α、β二聚体侧向缔合形成的,每个α链与一个β链通过头对头连接。重新组装的亚基恢复了增加肌动蛋白低剪切粘度的能力,尽管分离的α或β亚基没有活性。用脑α亚基和猪红细胞血影蛋白β亚基形成了杂交分子,并观察到它们是长度为100 nm的双链杆状,没有四聚体。与红细胞β亚基杂交的¹²⁵I标记的脑α链获得了与红细胞膜上锚蛋白位点结合的能力。将这些多肽从十二烷基硫酸钠凝胶转移到硝酸纤维素纸上后,¹²⁵I标记的脑α链仅与红细胞和脑血影蛋白的β亚基结合。针对脑血影蛋白的亲和纯化抗体与红细胞血影蛋白的两个亚基以及在所检查的所有组织的膜中与分子量与脑血影蛋白相似的多肽发生交叉反应。交叉反应的多肽仅定位在肝脏亚细胞组分的质膜中。这些研究提供了有力的额外证据,表明脑血影蛋白和哺乳动物红细胞血影蛋白属于一个密切相关的蛋白质家族,其两个亚基具有保守的功能。