Fages C, Nolo R, Huttunen H J, Eskelinen E, Rauvala H
Laboratory of Molecular Neurobiology, Institute of Biotechnology, Division of Biochemistry, Department of Biosciences, Viikinkaari 5, FIN-00014 University of Helsinki, Finland.
J Cell Sci. 2000 Feb;113 ( Pt 4):611-20. doi: 10.1242/jcs.113.4.611.
Amphoterin, a major form of HMG (high mobility group) 1 proteins, is highly expressed in immature and malignant cells. A role in cell motility is suggested by the ability of amphoterin to promote neurite extension through RAGE (receptor of advanced glycation end products), an immunoglobulin superfamily member that communicates with the GTPases Cdc42 and Rac. We show here that cell contact with the laminin matrix induces accumulation of both amphoterin mRNA and protein close to the plasma membrane, which is accompanied by extracellular export of amphoterin. A role for amphoterin in extracellular matrix-dependent cell regulation is further suggested by the finding that specific decrease of amphoterin mRNA and protein, using antisense oligonucleotides transfected into cells, inhibits cell migration to laminin in a transfilter assay whereas the oligonucleotides in the culture medium have no effect. Moreover, affinity-purified anti-amphoterin antibodies inhibit cell migration to laminin, supporting an extracellular role for the endogenous amphoterin in cell motility. The finding that amphoterin expression is more pronounced in cells with a motile phenotype as compared to cells of dense cultures, is consistent with the results of the cell migration assays. Our results strongly suggest that amphoterin is a key player in the migration of immature and transformed cells.
两性蛋白,一种主要形式的HMG(高迁移率族)1蛋白,在未成熟细胞和恶性细胞中高度表达。两性蛋白通过晚期糖基化终产物受体(RAGE)促进神经突延伸的能力表明其在细胞运动中发挥作用,RAGE是一种免疫球蛋白超家族成员,可与GTP酶Cdc42和Rac相互作用。我们在此表明,细胞与层粘连蛋白基质接触会诱导两性蛋白mRNA和蛋白质在质膜附近积累,同时伴有两性蛋白的细胞外分泌。将反义寡核苷酸转染到细胞中特异性降低两性蛋白mRNA和蛋白质水平,在跨膜滤器试验中抑制细胞向层粘连蛋白迁移,而培养基中的寡核苷酸则无此作用,这一发现进一步表明两性蛋白在细胞外基质依赖性细胞调节中发挥作用。此外,亲和纯化的抗两性蛋白抗体抑制细胞向层粘连蛋白迁移,支持内源性两性蛋白在细胞运动中的细胞外作用。与致密培养细胞相比,两性蛋白在具有运动表型的细胞中表达更明显,这一发现与细胞迁移试验结果一致。我们的结果强烈表明,两性蛋白是未成熟细胞和转化细胞迁移中的关键因子。