Stifani S, Barber D L, Nimpf J, Schneider W J
Department of Biochemistry, University of Alberta, Edmonton, Canada.
Proc Natl Acad Sci U S A. 1990 Mar;87(5):1955-9. doi: 10.1073/pnas.87.5.1955.
Specific cell-surface receptors mediate the uptake of plasma proteins into growing oocytes of oviparous species, thereby forming yolk. Quantitatively the most important yolk precursors are the lipoproteins, very low density lipoprotein, and vitellogenin. We show that a single major chicken oocyte plasma membrane protein with an apparent molecular mass of 95 kDa as determined by SDS/PAGE under nonreducing conditions is the receptor for both of these ligands. Binding activities for the two ligands copurified on ligand affinity matrices and were inhibited by the same antibody preparations, and the ligands competed with each other for binding to the 95-kDa protein. In addition to these biochemical and immunological lines of evidence for the identity of the vitellogenin receptor with the very low density lipoprotein receptor, genetic proof was obtained. We have previously shown that the mutant nonlaying "restricted-ovulator" hen carries a defect in the gene responsible for functional expression of the oocyte 95-kDa protein. Here we demonstrate that this single gene defect in the restricted-ovulator hen has detrimental consequences for the binding not only of very low density lipoprotein but also of vitellogenin to the 95-kDa receptor normally present in oocytes. The intriguing bifunctionality of this chicken oocyte membrane protein possibly relates to its crucial role in receptor-mediated control of oocyte growth.
特定的细胞表面受体介导血浆蛋白被卵生动物生长中的卵母细胞摄取,从而形成卵黄。从数量上看,最重要的卵黄前体是脂蛋白、极低密度脂蛋白和卵黄生成素。我们发现,在非还原条件下通过SDS/PAGE测定,一种表观分子量为95 kDa的单一主要鸡卵母细胞质膜蛋白是这两种配体的受体。两种配体在配体亲和基质上的结合活性共同纯化,并被相同的抗体制剂抑制,且这两种配体相互竞争与95 kDa蛋白的结合。除了这些关于卵黄生成素受体与极低密度脂蛋白受体同一性的生化和免疫学证据外,还获得了遗传学证据。我们之前已经表明,突变的不产卵“限制排卵”母鸡在负责卵母细胞95 kDa蛋白功能表达的基因中存在缺陷。在此我们证明,限制排卵母鸡中的这种单一基因缺陷不仅对极低密度脂蛋白与95 kDa受体的结合有不利影响,而且对卵黄生成素与卵母细胞中正常存在的95 kDa受体的结合也有不利影响。这种鸡卵母细胞膜蛋白引人关注的双功能性可能与其在受体介导的卵母细胞生长控制中的关键作用有关。