Wong M H, Filbin M T
Department of Biological Sciences, Hunter College of the City University of New York, New York 10021.
J Cell Biol. 1994 Aug;126(4):1089-97. doi: 10.1083/jcb.126.4.1089.
The extracellular domain of the myelin P0 protein is believed to engage in adhesive interactions and thus hold the myelin membrane compact. We have previously shown that P0 can behave as a homophilic adhesion molecule through interactions of its extracellular domains (Filbin, M. T., F. S. Walsh, B. D. Trapp, J. A. Pizzey, and G. I. Tennekoon. 1990. Nature (Lond.) 344:871-872). To determine if the cytoplasmic domain of P0 must be intact for the extracellular domains to adhere, we compared the adhesive capabilities of P0 proteins truncated at the COOH-terminal to the full-length P0 protein. P0 cDNAs lacking nucleotides coding for the last 52 or 59 amino acids were transfected into CHO cells, and surface expression of the truncated proteins was assessed by immunofluorescence, surface labeling followed by immunoprecipitation, and an ELISA. Cell lines were chosen that expressed at least equivalent amounts of the truncated P0 proteins at the surface as did a cell line expressing the full-length P0. The adhesive properties of these three cell lines were compared. It was found that when a suspension of single cells was allowed to aggregate for a period of 60 min, only the cells expressing the full-length P0 had formed large aggregates, while the cells expressing the truncated P0 molecules were still mostly single cells indistinguishable from the control cells. Furthermore, 25-30% of the full-length P0 was insoluble in NP40, indicative of an interaction with the cytoskeleton, whereas only 5-10% of P0 lacking 52 amino acids and none of P0 lacking 59 amino acids were insoluble. These results suggest that for the extracellular domain of P0 to behave as a homophilic adhesion molecule, its cytoplasmic domain must be intact, and most probably, it is interacting with the cytoskeleton.
髓磷脂P0蛋白的细胞外结构域被认为参与黏附相互作用,从而使髓磷脂膜保持紧密。我们之前已经表明,P0可通过其细胞外结构域的相互作用表现为同嗜性黏附分子(菲尔宾,M.T.,F.S.沃尔什,B.D.特拉普,J.A.皮兹,和G.I.坦内科恩。1990年。《自然》(伦敦)344:871 - 872)。为了确定P0的细胞质结构域对于细胞外结构域的黏附是否必须完整,我们比较了在COOH末端截短的P0蛋白与全长P0蛋白的黏附能力。将缺少编码最后52或59个氨基酸的核苷酸的P0 cDNA转染到CHO细胞中,并通过免疫荧光、表面标记后免疫沉淀以及酶联免疫吸附测定法评估截短蛋白的表面表达。选择了在表面表达至少等量截短P0蛋白的细胞系,其表达量与表达全长P0的细胞系相当。比较了这三种细胞系的黏附特性。结果发现,当单细胞悬液聚集60分钟时,只有表达全长P0的细胞形成了大的聚集体,而表达截短P0分子的细胞大多仍然是单细胞,与对照细胞难以区分。此外,25 - 30%的全长P0不溶于NP40,这表明它与细胞骨架有相互作用,而缺少52个氨基酸的P0只有5 - 10%不溶,缺少59个氨基酸的P0则无一不溶。这些结果表明,为使P0的细胞外结构域表现为同嗜性黏附分子,其细胞质结构域必须完整,而且很可能它正在与细胞骨架相互作用。