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表皮 Wnt 通过协调表皮和真皮之间的动态信号串扰来控制毛囊的诱导。

Epidermal Wnt controls hair follicle induction by orchestrating dynamic signaling crosstalk between the epidermis and dermis.

机构信息

Department of Biomedical Genetics, University of Rochester Medical Center, Rochester, NY, USA.

出版信息

J Invest Dermatol. 2013 Apr;133(4):890-8. doi: 10.1038/jid.2012.407. Epub 2012 Nov 29.

Abstract

A signal first arising in the dermis to initiate the development of hair follicles has been described for many decades. Wnt is the earliest signal known to be intimately involved in hair follicle induction. However, it is not clear whether the inductive signal of Wnt arises intradermally or intraepidermally. Whether Wnt acts as the first dermal signal to initiate hair follicle development also remains unclear. Here we report that Wnt production mediated by Gpr177, the mouse Wls ortholog, is essential for hair follicle induction. Gpr177, encoding a multipass transmembrane protein, regulates Wnt sorting and secretion. Cell type-specific abrogation of the signal reveals that only epidermal, but not dermal, production of Wnt is required. An intraepidermal Wnt signal is necessary and sufficient for hair follicle initiation. However, the subsequent development depends on reciprocal signaling crosstalk of epidermal and dermal cells. Wnt signals within the epidermis and dermis and crossing between the epidermis and dermis have distinct roles and specific functions in skin development. This study not only defines the cell type responsible for Wnt production, but also reveals a highly dynamic regulation of Wnt signaling at different steps of hair follicle morphogenesis. Our findings uncover a mechanism underlying hair follicle development orchestrated by the Wnt pathway.

摘要

几十年来,人们一直描述一种最初在真皮中产生的信号,以启动毛囊的发育。Wnt 是最早被认为与毛囊诱导密切相关的信号。然而,尚不清楚 Wnt 的诱导信号是在真皮内还是表皮内产生的。Wnt 是否作为启动毛囊发育的第一个真皮信号也不清楚。在这里,我们报告说,Gpr177(小鼠 Wls 同源物)介导的 Wnt 产生对于毛囊诱导是必不可少的。Gpr177 编码一种多跨膜蛋白,调节 Wnt 的分拣和分泌。信号的细胞类型特异性消除表明,仅表皮而不是真皮产生的 Wnt 是必需的。表皮内的 Wnt 信号对于毛囊起始是必要和充分的。然而,随后的发育取决于表皮和真皮细胞之间的相互信号转导。表皮和真皮内的 Wnt 信号以及表皮和真皮之间的信号传递在皮肤发育中具有不同的作用和特定的功能。这项研究不仅定义了负责 Wnt 产生的细胞类型,还揭示了 Wnt 信号在毛囊形态发生的不同步骤中的高度动态调节。我们的发现揭示了由 Wnt 途径协调的毛囊发育的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/814e/3594635/5f2b57653793/nihms-411206-f0001.jpg

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