Barsky S H, Rao C N, Williams J E, Liotta L A
J Clin Invest. 1984 Sep;74(3):843-8. doi: 10.1172/JCI111501.
Human and murine tumor cells contain cell surface receptors for the basement membrane glycoprotein laminin. Since a biologic role for the receptor had not previously been demonstrated, we explored the possibility that the laminin receptor may be involved in hematogenous metastases formation. Preincubation of metastatic murine melanoma cells with syngeneic whole laminin followed by tail vein injection increased tumor cell retention in the lung and strongly stimulated metastases formation. The domain of the laminin molecule responsible for stimulating metastases was identified. Laminin is a cross-shaped molecule with three short arms and one long arm. All arms have globular end regions. Purified protease-derived fragments of laminin were prepared which (a) lacked only the long arm of the molecule (alpha fragment) or, (b) lacked both the long arm and the globular end regions of the short arms (C1 fragment). Both types of fragments contained the laminin receptor binding region. The fragments had opposite effects on metastases. The alpha fragment stimulated metastases formation to the same extent as whole laminin. In contrast, the C1 fragment greatly reduced or abolished metastases formation in a dose-dependent manner. The C1 fragment also inhibited tumor cell attachment to whole amnion basement membrane in vitro. We conclude that intact globular end regions on the short arms (but not the long arm) of the cell surface receptor-bound laminin molecule are necessary for stimulating metastases by the intravenous route.
人和鼠的肿瘤细胞含有基底膜糖蛋白层粘连蛋白的细胞表面受体。由于此前尚未证实该受体的生物学作用,我们探讨了层粘连蛋白受体可能参与血行转移形成的可能性。将转移性鼠黑色素瘤细胞与同基因的完整层粘连蛋白预孵育,然后经尾静脉注射,可增加肿瘤细胞在肺中的滞留,并强烈刺激转移的形成。确定了层粘连蛋白分子中负责刺激转移的结构域。层粘连蛋白是一种具有三条短臂和一条长臂的十字形分子。所有臂都有球形末端区域。制备了纯化的层粘连蛋白蛋白酶衍生片段,这些片段:(a)仅缺少分子的长臂(α片段),或(b)既缺少长臂又缺少短臂的球形末端区域(C1片段)。两种类型的片段都含有层粘连蛋白受体结合区域。这些片段对转移有相反的作用。α片段刺激转移形成的程度与完整层粘连蛋白相同。相反,C1片段以剂量依赖的方式大大减少或消除了转移的形成。C1片段在体外也抑制肿瘤细胞附着于完整的羊膜基底膜。我们得出结论,细胞表面受体结合的层粘连蛋白分子短臂上完整的球形末端区域(而非长臂)是通过静脉途径刺激转移所必需的。