Idris N, Carothers Carraway C A, Carraway K L
Department of Cell Biology and Anatomy, University of Miami School of Medicine, Miami, Florida 33101, USA.
J Cell Physiol. 2001 Nov;189(2):162-70. doi: 10.1002/jcp.10012.
ErbB2 has been implicated in numerous functions, including normal and aberrant development of a variety of tissues. Although no soluble ligand has been identified for ErbB2, we have recently shown that ASGP-2, the transmembrane subunit of the cell surface glycoprotein Muc4 (also called sialomucin complex, SMC), can act as an intramembrane ligand for ErbB2 and modulate its activity. Muc4/SMC is abundantly expressed at the apical surface of most epithelia of the rat female reproductive tract. Since Muc4/SMC can interact with ErbB2 when they are expressed in the same cell and membrane, we investigated whether these two proteins are co-expressed and co-localized in tissues of the female reproductive tract. Using an anti-ErbB2 antibody from Dako, we found moderate staining at the basolateral surface of the oviduct and also around the cell membrane of the most superficial and medial layers of the stratified epithelia of the vagina. In contrast, Neomarkers neu Ab1 antibody intensely stained the apical surface of the epithelium of the oviduct and the medial and basal layers of the stratified epithelia of the vagina, substantially overlapping the distribution of Muc4/SMC. Furthermore, Muc4/SMC and ErbB2 association in different tissues of the female reproductive tract was demonstrated by co-immunoprecipitation analysis. Interestingly, phosphorylated ErbB2 detected by anti-phospho-ErbB2 is primarily present at the apical surface of the oviduct. Thus, our results show that differentially localized forms of ErbB2 are recognized by different antibodies and raise interesting questions about the nature of the different forms of ErbB2, the mechanism for differential localization, and possible functions of ErbB2 in the female reproductive tract. They also raise a cautionary note about the use of different ErbB2 antibodies for expression and localization studies.
ErbB2参与了众多功能,包括多种组织的正常和异常发育。尽管尚未鉴定出ErbB2的可溶性配体,但我们最近发现,细胞表面糖蛋白Muc4(也称为涎黏蛋白复合物,SMC)的跨膜亚基ASGP-2可作为ErbB2的膜内配体并调节其活性。Muc4/SMC在大鼠雌性生殖道大多数上皮的顶端表面大量表达。由于Muc4/SMC在同一细胞和膜中表达时可与ErbB2相互作用,我们研究了这两种蛋白在雌性生殖道组织中是否共表达和共定位。使用Dako公司的抗ErbB2抗体,我们在输卵管的基底外侧表面以及阴道复层上皮最表层和中间层的细胞膜周围发现了中度染色。相比之下,Neomarkers neu Ab1抗体强烈染色输卵管上皮的顶端表面以及阴道复层上皮的中间层和基底层,与Muc4/SMC的分布基本重叠。此外,通过共免疫沉淀分析证实了Muc4/SMC与ErbB2在雌性生殖道不同组织中的结合。有趣的是,抗磷酸化ErbB2检测到的磷酸化ErbB2主要存在于输卵管的顶端表面。因此,我们的结果表明,不同定位形式的ErbB2可被不同抗体识别,并引发了关于ErbB2不同形式的性质、差异定位机制以及ErbB2在雌性生殖道中可能功能的有趣问题。它们还对在表达和定位研究中使用不同的ErbB2抗体提出了警示。