Tucker Richard P
Department of Neurobiology and Anatomy, The Bowman Gray School of Medicine, Wake Forest University, 300 S. Hawthorne Road, 27103, Winston-Salem, NC, USA.
Rouxs Arch Dev Biol. 1991 Mar;200(2):108-112. doi: 10.1007/BF00637191.
I have studied the distribution of tenascin and its transcript during feather germ morphogenesis using immunohistochemistry and in situ hybridization. Anti-tenascin staining is intense in the periphery of dermal core condensations in both the feather rudiment and bud. There is faint anti-tenascin immunoreactivity in the overlying epithelium, but the apex of the bud is unstained. The appearance of tenascin in the developing feather is transient, as no significant anti-tenascin staining can be detected in the feather shaft or follicle at later stages of development. In situ hybridization with a tenascin cDNA probe reveals tenascin mRNA in the epithelial placode of the feather rudiment and early bud. In contrast, tenascin mRNA is concentrated in the dermis in the late feather bud. Therefore, at the time when inductive events are taking place, the expression of tenascin flips from the epithelium overlying tenascin-rich mesenchyme to the mesenchyme itself.
我运用免疫组织化学和原位杂交技术,研究了腱生蛋白及其转录本在羽毛胚形态发生过程中的分布情况。在羽毛原基和羽芽的真皮核心凝聚物周边,抗腱生蛋白染色强烈。在上覆上皮中存在微弱的抗腱生蛋白免疫反应性,但羽芽顶端未染色。腱生蛋白在发育中的羽毛中的出现是短暂的,因为在发育后期的羽轴或毛囊中未检测到明显的抗腱生蛋白染色。用腱生蛋白cDNA探针进行原位杂交显示,在羽毛原基和早期羽芽的上皮基板中有腱生蛋白mRNA。相比之下,腱生蛋白mRNA在晚期羽芽的真皮中集中。因此,在诱导事件发生时,腱生蛋白的表达从富含腱生蛋白的间充质上覆的上皮翻转到间充质本身。