García-Castro M I, Anderson R, Heasman J, Wylie C
Wellcome/CRC Institute for Developmental Biology and Cancer, Cambridge CB2 1QR, England.
J Cell Biol. 1997 Jul 28;138(2):471-80. doi: 10.1083/jcb.138.2.471.
Cells are known to bind to individual extracellular matrix glycoproteins in a complex and poorly understood way. Overall strength of adhesion is thought to be mediated by a combinatorial mechanism, involving adhesion of a cell to a variety of binding sites on the target glycoproteins. During migration in embryos, cells must alter their overall adhesiveness to the substrate to allow locomotion. The mechanism by which this is accomplished is not well understood. During early development, the cells destined to form the gametes, the primordial germ cells (PGCs), migrate from the developing hind gut to the site where the gonad will form. We have used whole-mount immunocytochemistry to study the changing distribution of three extracellular matrix glycoproteins, collagen IV, fibronectin, and laminin, during PGC migration and correlated this with quantitative assays of adhesiveness of PGCs to each of these. We show that PGCs change their strength of adhesion to each glycoprotein differentially during these stages. Furthermore, we show that PGCs interact with a discrete tract of laminin at the end of migration. Closer analysis of the adhesion of PGCs to laminin revealed that PGCs adhere particularly strongly to the E3 domain of laminin, and blocking experiments in vitro suggest that they adhere to this domain using a cell surface proteoglycan.
已知细胞以一种复杂且鲜为人知的方式与单个细胞外基质糖蛋白结合。黏附的总体强度被认为是由一种组合机制介导的,该机制涉及细胞与靶糖蛋白上各种结合位点的黏附。在胚胎迁移过程中,细胞必须改变其对底物的总体黏附性以实现移动。实现这一过程的机制尚不清楚。在早期发育过程中,注定要形成配子的细胞,即原始生殖细胞(PGCs),从发育中的后肠迁移到性腺将形成的部位。我们使用全组织免疫细胞化学方法研究了三种细胞外基质糖蛋白,IV型胶原蛋白、纤连蛋白和层粘连蛋白,在PGC迁移过程中的分布变化,并将其与PGC对每种糖蛋白的黏附定量分析相关联。我们发现,在这些阶段,PGC对每种糖蛋白的黏附强度存在差异变化。此外,我们还发现PGC在迁移结束时与一条离散的层粘连蛋白区域相互作用。对PGC与层粘连蛋白黏附的进一步分析表明,PGC特别强烈地黏附于层粘连蛋白的E3结构域,体外阻断实验表明它们通过细胞表面蛋白聚糖黏附于该结构域。