Sarris A H, Palade G E
J Cell Biol. 1982 Jun;93(3):583-90. doi: 10.1083/jcb.93.3.583.
With the lithium diiodosalicylate (LIS1) extraction-phenol partition method, we have isolated a sialoglycoprotein fraction from DBA/2 mouse erythrocyte ghosts. We have demonstrated that the Laemmeli system for SDS PAGE can resolve this fraction into four monomers of which two (gp-2.1 and gp-3.1) appear to be authentic, whereas the other two (gp-2.2 and gp-3.2) are probably generated from gp-2.1 and gp-3.1, by limited proteolysis during the isolation procedure. All four components contain O-acetylated neuraminic acid residues, can be stained with Periodic acid-Schiff reagent (PAS) and with Coomassie Brilliant Blue (CB), and can be radioiodinated with the lactoperoxidase-glucose oxidase (LPO-GO) method. All monomers but especially gp-2.1 and gp-3.1 generate characteristic aggregates during solubilization in SDS. The aggregation is enhanced by boiling at high concentrations, and can be reversed by boiling at low concentrations. In addition, the fraction contains a diffuse component present also in ghosts which stains poorly with CB and with PAS and cannot be radioiodinated by the LPO-GO technique. SDS PAGE in the Steck and Yu gel system does not give an accurate separation of the sialoglycoprotein monomers.
采用二碘水杨酸锂(LIS1)提取 - 酚分配法,我们从DBA/2小鼠红细胞血影中分离出了一个唾液糖蛋白组分。我们已经证明,用于SDS - PAGE的Laemmeli系统可将该组分解析为四个单体,其中两个(gp - 2.1和gp - 3.1)似乎是真实的,而另外两个(gp - 2.2和gp - 3.2)可能是在分离过程中通过有限的蛋白水解作用由gp - 2.1和gp - 3.1产生的。所有这四个组分都含有O - 乙酰化神经氨酸残基,可用过碘酸 - 希夫试剂(PAS)和考马斯亮蓝(CB)染色,并且可用乳过氧化物酶 - 葡萄糖氧化酶(LPO - GO)法进行放射性碘化。所有单体,尤其是gp - 2.1和gp - 3.1在SDS中溶解时会产生特征性聚集体。在高浓度下煮沸会增强聚集,而在低浓度下煮沸可使其逆转。此外,该组分还含有一种弥散成分,在血影中也存在,它用CB和PAS染色效果不佳,并且不能通过LPO - GO技术进行放射性碘化。在Steck和Yu凝胶系统中进行的SDS - PAGE不能准确分离唾液糖蛋白单体。