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β-连环蛋白信号传导可启动羽芽发育。

beta-catenin signaling can initiate feather bud development.

作者信息

Noramly S, Freeman A, Morgan B A

机构信息

Cutaneous Biology Research Center, Massachusetts General Hospital, Harvard Medical School, Charlestown, MA 02129, USA.

出版信息

Development. 1999 Aug;126(16):3509-21. doi: 10.1242/dev.126.16.3509.

Abstract

Intercellular signaling by a subset of Wnts is mediated by stabilization of cytoplasmic beta-catenin and its translocation to the nucleus. Immunolocalization of beta-catenin in developing chick skin reveals that this signaling pathway is active in a dynamic pattern from the earliest stages of feather bud development. Forced activation of this pathway by expression of a stabilized beta-catenin in the ectoderm results in the ectopic formation of feather buds. This construct is sufficient to induce bud formation since it does so both within presumptive feather tracts and in normally featherless regions where tract-specific signals are absent. It is also insensitive to the lateral inhibition that mediates the normal spacing of buds and can induce ectopic buds in interfollicular skin. However, additional patterning signals cooperate with this pathway to regulate gene expression within domains of stabilized beta-catenin expression. Localized activation of this pathway within the bud as it develops is required for normal morphogenesis and ectopic activation of the pathway leads to abnormally oriented buds and growths on the feather filaments. These results suggest that activation of the beta-catenin pathway initiates follicle development in embryonic skin and plays important roles in the subsequent morphogenesis of the bud.

摘要

一部分Wnt蛋白的细胞间信号传导是由细胞质中β-连环蛋白的稳定及其向细胞核的转位介导的。β-连环蛋白在发育中的鸡皮肤中的免疫定位显示,这种信号通路从羽芽发育的最早阶段就以动态模式活跃。在外胚层中通过表达稳定的β-连环蛋白来强制激活该通路会导致羽芽的异位形成。这种构建体足以诱导芽的形成,因为它在假定的羽区以及不存在区域特异性信号的正常无羽区域都能做到这一点。它对介导芽正常间距的侧向抑制也不敏感,并且可以在滤泡间皮肤中诱导异位芽。然而,额外的模式形成信号与该通路协同作用,以调节稳定的β-连环蛋白表达域内的基因表达。随着芽的发育,芽内该通路的局部激活是正常形态发生所必需的,而该通路的异位激活会导致芽的方向异常以及羽丝上的生长异常。这些结果表明,β-连环蛋白通路的激活启动了胚胎皮肤中的毛囊发育,并在芽随后的形态发生中发挥重要作用。

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