Rossini G P, Camellini L
Dipartimento di Scienze Biomediche, Università di Modena, Italy.
J Steroid Biochem Mol Biol. 1994 Sep;50(5-6):241-52. doi: 10.1016/0960-0760(94)90128-7.
The structure of estrogen-receptor complexes recovered in cytosolic extracts of MCF-7 cells treated with hormone at 2 degrees was probed by chemical crosslinking of intact cells and sample analysis with four monoclonal anti-estrogen receptor antibodies. When MCF-7 cells were treated with either glutaraldehyde or dithiobis(succinimidyl propionate), cytosoluble estrogen-receptor complexes consisted of two major forms sedimenting as 4 S monomers and 8-9 S salt-resistant oligomers. By high salt sucrose density gradient centrifugation, we could observe that the four monoclonal anti-estrogen receptor antibodies bound different forms of receptor complexes from crosslinked cells. While H222 and H226 antibodies could interact with any form we detected, the D75 and D547 monoclonals could only recognize those showing sedimentation coefficients lower than 7 S. When cytosolic extracts from [35S]-methionine-labeled cells were subjected to immunoprecipitation with H222 and D75 anti-estrogen receptor antibodies, electrophoretic analysis of material extracted from immunoprecipitates revealed the presence of 65 kDa estrogen receptors. If extracts were prepared from crosslinked cells, instead, two more components with estimated molecular masses of 220 and 100 kDa were specifically immunoprecipitated by the H222 antibody, whereas only the 100 kDa component and the estrogen receptor were found in immunoprecipitates obtained with the D75 monoclonal. When estrogen-receptor complexes were immunopurified from extracts prepared after cells had been crosslinked with dithiobis(succinimidyl propionate), and the oligomers were dissociated by treatment with beta-mercaptoethanol, electrophoretic analysis of our samples showed that only the 65 kDa estrogen receptor and a 50 kDa protein were selectively immunoprecipitated by anti-estrogen receptor antibodies. We concluded that the structures of cytosoluble estrogen-receptor complexes in MCF-7 cells treated with hormone at 2 degrees C, include oligomeric forms which contain a 50 kDa non-steroid binding protein.
通过完整细胞的化学交联以及使用四种抗雌激素受体单克隆抗体进行样品分析,探究了在2℃用激素处理的MCF-7细胞胞质提取物中回收的雌激素受体复合物的结构。当MCF-7细胞用戊二醛或二硫代双(琥珀酰亚胺丙酸酯)处理时,胞质可溶性雌激素受体复合物由两种主要形式组成,沉降为4S单体和8-9S耐盐寡聚体。通过高盐蔗糖密度梯度离心,我们可以观察到四种抗雌激素受体单克隆抗体与交联细胞中不同形式的受体复合物结合。虽然H222和H226抗体可以与我们检测到的任何形式相互作用,但D75和D547单克隆抗体只能识别沉降系数低于7S的那些形式。当用H222和D75抗雌激素受体抗体对[35S]-甲硫氨酸标记细胞的胞质提取物进行免疫沉淀时,对从免疫沉淀物中提取的物质进行电泳分析,发现存在65kDa的雌激素受体。相反,如果从交联细胞中制备提取物,H222抗体可特异性免疫沉淀另外两种估计分子量为220和100kDa的成分,而用D75单克隆抗体获得的免疫沉淀物中仅发现100kDa成分和雌激素受体。当用二硫代双(琥珀酰亚胺丙酸酯)交联细胞后从提取物中免疫纯化雌激素受体复合物,并用β-巯基乙醇处理使寡聚体解离时,对我们的样品进行电泳分析表明,抗雌激素受体抗体仅选择性免疫沉淀65kDa的雌激素受体和一种50kDa的蛋白质。我们得出结论,在2℃用激素处理的MCF-7细胞中,胞质可溶性雌激素受体复合物的结构包括含有50kDa非类固醇结合蛋白的寡聚体形式。