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Foxi3转录因子和Notch信号通路控制斑马鱼胚胎表皮前体细胞形成皮肤离子细胞。

Foxi3 transcription factors and Notch signaling control the formation of skin ionocytes from epidermal precursors of the zebrafish embryo.

作者信息

Jänicke Martina, Carney Thomas J, Hammerschmidt Matthias

机构信息

Max-Planck-Institute of Immunobiology, Stuebeweg 51, D-79108 Freiburg, Germany.

出版信息

Dev Biol. 2007 Jul 15;307(2):258-71. doi: 10.1016/j.ydbio.2007.04.044. Epub 2007 May 3.

Abstract

Ionocytes are specialized epithelial cell types involved in the maintenance of osmotic homeostasis. In amniotes, they are present in the renal system, while in water-living embryos of lower vertebrates additional ionocytes are found in the skin. Thus far, relatively little has been known about the mechanisms of ionocyte development. Here we demonstrate that skin ionocytes of zebrafish embryos derive from the same precursor cells as keratinocytes. Carrying out various combinations of gain- and loss-of-function studies, we show that the segregation of ionocytes from the epidermal epithelium is governed by an interplay between Notch signaling and two Forkhead-box transcription factors, Foxi3a and Foxi3b. The two foxi3 genes are expressed in ionocyte precursors and are required both for ionocyte-specific expression of the Notch ligand Jagged2a, and for ionocyte differentiation, characterized by the production of particular ATPases. Ionocytic Notch ligands, in turn, signal to neighboring cells, where activated Notch1 leads to a repression of foxi3 expression, allowing those cells to become keratinocytes. A model for ionocyte versus keratinocyte development will be presented, postulating additional thus far unidentified pro-ionocyte factors.

摘要

离子细胞是参与维持渗透平衡的特殊上皮细胞类型。在羊膜动物中,它们存在于肾脏系统中,而在低等脊椎动物的水生胚胎中,皮肤中也发现了额外的离子细胞。到目前为止,人们对离子细胞发育的机制了解相对较少。在这里,我们证明斑马鱼胚胎的皮肤离子细胞与角质形成细胞来源于相同的前体细胞。通过进行各种功能获得和功能丧失研究的组合,我们表明离子细胞从表皮上皮的分离受Notch信号与两个叉头框转录因子Foxi3a和Foxi3b之间相互作用的控制。两个foxi3基因在离子细胞前体中表达,对于Notch配体Jagged2a的离子细胞特异性表达以及以特定ATP酶产生为特征的离子细胞分化都是必需的。离子细胞Notch配体反过来向邻近细胞发出信号,激活的Notch1在邻近细胞中导致foxi3表达的抑制,使这些细胞成为角质形成细胞。我们将提出一个离子细胞与角质形成细胞发育的模型,推测还存在迄今未鉴定的促离子细胞因子。

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