Kawamura K, Fujiwara S, Sugino Y M
Department of Biology, Faculty of Science, Kochi University, Japan.
Development. 1991 Nov;113(3):995-1005. doi: 10.1242/dev.113.3.995.
We have examined immunocytochemically the expression, localization and in vivo function of a calcium-dependent and galactose-binding 14 x 10(3) Mr lectin purified from the budding tunicate, Polyandrocarpa misakiensis. Lectin granules first appeared in the inner epithelium of a double-walled bud vesicle. Soon after the bud entered the developmental phase, the granules were secreted into the mesenchymal space, where the lectin-positive extracellular matrix (ECM) developed. The lectin was also produced and secreted by granular leucocytes during budding. Hemoblasts, pluripotent stem cells in the blood, were often found in association with the ECM and they aggregated with epithelial cells to form organ rudiments. The lectin showed a high binding affinity for hemoblast precursors. The blockage of epithelial transformation of stem cells by galactose in in vivo bioassy was ineffective in the presence of the lectin. Polyclonal anti-lectin antibody prevented the hemoblasts spreading on the ECM and moving toward the epithelium, but it did not block the cell-cell adhesion of hemoblasts. By three days of bud development, lectin granules and ECM have almost disappeared from the developing bud together with a cessation of hemoblast aggregation. These results show that Polyandrocarpa lectin is a component of the ECM induced specifically in budding and suggest strongly that it plays a role in bud morphogenesis by directing the migration of pluripotent stem cells to the epithelium.
我们已经通过免疫细胞化学方法研究了从出芽被囊动物三崎聚雄海鞘中纯化得到的一种钙依赖性且结合半乳糖的14×10³Mr凝集素的表达、定位及体内功能。凝集素颗粒首先出现在双壁芽泡的内层上皮中。芽进入发育阶段后不久,这些颗粒就分泌到间充质空间,凝集素阳性的细胞外基质(ECM)在那里形成。在出芽过程中,颗粒白细胞也产生并分泌这种凝集素。成血细胞,即血液中的多能干细胞,经常与ECM相关联,并且它们与上皮细胞聚集形成器官原基。这种凝集素对成血细胞前体表现出高结合亲和力。在体内生物测定中,半乳糖对干细胞上皮转化的阻断在有凝集素存在时无效。多克隆抗凝集素抗体阻止成血细胞在ECM上扩散并向上皮移动,但它并不阻断成血细胞之间的细胞间黏附。到芽发育三天时,凝集素颗粒和ECM几乎与成血细胞聚集的停止一起从发育中的芽中消失。这些结果表明,三崎聚雄海鞘凝集素是出芽过程中特异性诱导产生的ECM的一个组成部分,并强烈提示它通过引导多能干细胞向上皮迁移而在芽形态发生中发挥作用。