Lin S H, Culic O, Flanagan D, Hixson D C
Department of Molecular Pathology, University of Texas, M.D. Anderson Cancer Center, Houston 77030.
Biochem J. 1991 Aug 15;278 ( Pt 1)(Pt 1):155-61. doi: 10.1042/bj2780155.
One of the cell-adhesion molecules (CAMs) responsible for rat hepatocyte aggregation has been described as a glycoprotein having an Mr of 105,000 (cell-CAM105). The Mr and localization of cell-CAM105 in liver membranes are very similar to those of liver ecto-ATPase, an ATPase with its nucleotide-hydrolysing site localized on the outside of the cell membrane. The protein sequence of the ecto-ATPase has been deduced from cDNA cloning. Structural analysis of the sequence indicates that the ecto-ATPase has immunoglobulin-like domains and is a member of the immunoglobulin superfamily. Since a group of proteins in the immunoglobulin superfamily has been shown to have functions related to cell adhesion, the structural characteristics of the ecto-ATPase further led to the possibility that the ecto-ATPase may have functions related to cell adhesion. In this paper, using the cDNA for the ecto-ATPase, the anti-peptide antibodies produced against peptides derived from the ecto-ATPase cDNA sequence and monoclonal antibodies against the cell-CAM105, we present evidence of identity between cell-CAM105 and ecto-ATPase. First, in Western immunoblots, two anti-cell-CAM105 monoclonal antibodies cross-reacted with the purified ecto-ATPase. Secondly, in immunodepletion experiments, antibodies against the ecto-ATPase depleted the same protein recognized by the anti-cell-CAM105 antibodies. Thirdly, in two-dimensional gel-electrophoretic analysis, anti-peptide antibodies generated against an extracellular N-terminal peptide and the intracellular C-terminal peptides of the ecto-ATPase immunoprecipitated proteins of similar isoelectric points and Mr values to those of the cell-CAM105. Fourthly, proteins immunoprecipitated by anti-ecto-ATPase antibodies and anti-cell-CAM105 antibodies have similar V8-proteinase-digest peptide maps. Finally, monoclonal antibodies against the cell-CAM105 specifically recognized the protein expressed in COS cells transfected with the ecto-ATPase cDNA. These results indicate that the ecto-ATPase cDNA codes for a protein that is identical with the cell-CAM105. Since the ecto-ATPase has structural features of immunoglobulin domains, the identity of cell-CAM105 with ecto-ATPase leads to the conclusion that this liver CAM, similarly to neuronal CAM, is also a member of the immunoglobulin supergene family. Furthermore, immunological studies indicate that the cell-CAM105/ecto-ATPase is composed of two isoforms of different C-terminal sequences. The association of ATPase activity with cell-CAM105 raises the possibility that extracellular nucleotides may play important roles in regulating cell adhesion.
一种负责大鼠肝细胞聚集的细胞黏附分子(CAMs)已被描述为一种分子量为105,000的糖蛋白(细胞-CAM105)。细胞-CAM105在肝细胞膜中的分子量和定位与肝外ATP酶非常相似,肝外ATP酶是一种其核苷酸水解位点位于细胞膜外侧的ATP酶。外ATP酶的蛋白质序列已通过cDNA克隆推导得出。对该序列的结构分析表明,外ATP酶具有免疫球蛋白样结构域,是免疫球蛋白超家族的成员。由于免疫球蛋白超家族中的一组蛋白质已被证明具有与细胞黏附相关的功能,外ATP酶的结构特征进一步提示其可能具有与细胞黏附相关的功能。在本文中,我们利用外ATP酶的cDNA、针对外ATP酶cDNA序列衍生肽段产生的抗肽抗体以及针对细胞-CAM105的单克隆抗体,提供了细胞-CAM105与外ATP酶同一性的证据。首先,在蛋白质免疫印迹中,两种抗细胞-CAM105单克隆抗体与纯化的外ATP酶发生交叉反应。其次,在免疫去除实验中,抗外ATP酶抗体去除了抗细胞-CAM105抗体识别的相同蛋白质。第三,在二维凝胶电泳分析中,针对外ATP酶细胞外N端肽段和细胞内C端肽段产生的抗肽抗体免疫沉淀出的蛋白质,其等电点和分子量与细胞-CAM105相似。第四,抗外ATP酶抗体和抗细胞-CAM105抗体免疫沉淀的蛋白质具有相似的V8蛋白酶消化肽图谱。最后,针对细胞-CAM105的单克隆抗体特异性识别用外ATP酶cDNA转染的COS细胞中表达的蛋白质。这些结果表明,外ATP酶cDNA编码的蛋白质与细胞-CAM105相同。由于外ATP酶具有免疫球蛋白结构域的结构特征,细胞-CAM105与外ATP酶的同一性得出这样的结论:这种肝CAM与神经元CAM一样,也是免疫球蛋白超基因家族的成员。此外,免疫学研究表明,细胞-CAM105/外ATP酶由两种不同C端序列的同工型组成。ATP酶活性与细胞-CAM105的关联增加了细胞外核苷酸可能在调节细胞黏附中起重要作用的可能性。