Cells from Xenopus laevis gastrulae adhere to fibronectin-sepharose beads and other lectin coated beads.

Scanning electron microscopy Pub Date : 1986-01-01
K E Johnson, M H Silver
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Abstract

Cells from Xenopus laevis blastulae have a poorly developed ability to adhere to Sepharose beads covalently coupled to bovine plasma fibronectin (FN-beads). They do, however, have the ability to adhere to con A-beads and cytodex-1 and cytodex-3 beads. Beginning at the early gastrula stage, there is a progressively increasing ability of cells to adhere to FN-beads. Gastrula cells adhere to FN-beads by the formation of large ruffling lamellipodia. These cells can translocate on the surface of FN-beads; and when attached to both beads and the surrounding glass substratum of culture vessels, have the ability to move the beads extensively. Gastrula cells also have the ability to adhere to but not move upon con A-beads, wheat germ agglutinin-beads, and soy bean agglutinin-beads. They do not adhere significantly to Tetragonolobus purpureas agglutinin-beads. These results suggest that there are increasing numbers of fibronectin receptors present on the surface of embryonic amphibian cells during the period of gastrulation. They may explain the differential distribution of fibronectin-containing fibrils in vivo as observed by scanning electron microscopy.

非洲爪蟾原胚细胞粘附在纤维连接蛋白-sepharose珠和其他凝集素包被珠上。
非洲爪蟾囊胚细胞对与牛血浆纤维连接蛋白(FN-beads)共价偶联的Sepharose beads的粘附能力较差。然而,它们确实有能力粘附在con - a珠和cytodex-1和cytodex-3珠上。从原肠早期开始,细胞粘附fn -珠的能力逐渐增强。原肠细胞通过形成大的褶皱板足附着在fn珠上。这些细胞可以在fn -珠表面移位;并且当附着在珠和周围的培养容器的玻璃基质时,具有广泛移动珠的能力。原肠细胞也有粘附但不移动的能力,如玉米凝集素珠、小麦胚芽凝集素珠和大豆凝集素珠。它们不明显粘附于紫斑四虫凝集素珠上。这些结果表明,在胚胎两栖动物原肠胚形成时期,细胞表面存在越来越多的纤维连接蛋白受体。它们可以解释扫描电镜观察到的含纤维连接蛋白原纤维在体内的差异分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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