Bloom W S, Schook W, Feageson E, Ores C, Puszkin S
Biochim Biophys Acta. 1980 Jun 6;598(3):447-55. doi: 10.1016/0005-2736(80)90025-5.
Clathrin was isolated in highly purified form from bovine brain preparations rich in coated vesicles and by some improvements of our previous procedures. At pH 7.5, clathrin's solution was viscous, but clear. At pH 6.5, clathrin's solution was less viscous, but turbid. By electron microscopy, clathrin's turbidity at pH 6.5 correlated with the presence of numerous basket-like lattices or cages; the higher viscosity observed at pH 7.5 correlated with a mixture of various polymeric forms of clathrin having linearly assembled filaments or filamentous bundles of cross-linked clathrin molecules. In vivo, clathrin's capacity for assembling or disassembling itself into baskets or cage-like structures is compatible with a mechanism that retrieves areas of the plasma membrane containing protein molecules, smaller stimulatory or inhibitory compounds bound on the external cell membrane surface.
网格蛋白是通过对富含被膜小泡的牛脑制剂进行高度纯化,并对我们之前的方法进行一些改进而分离得到的。在pH 7.5时,网格蛋白溶液呈粘性但澄清。在pH 6.5时,网格蛋白溶液粘性较小但浑浊。通过电子显微镜观察,pH 6.5时网格蛋白的浑浊与大量篮状晶格或笼状结构的存在相关;在pH 7.5时观察到的较高粘度与网格蛋白的各种聚合物形式的混合物相关,这些聚合物形式具有线性组装的细丝或交联网格蛋白分子的丝状束。在体内,网格蛋白将自身组装或拆卸成篮状或笼状结构的能力与一种机制相兼容,该机制可回收含有蛋白质分子、结合在细胞膜外表面的较小刺激或抑制化合物的质膜区域。