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成纤维细胞生长因子受体1(FGFR1)在小鼠肢体发育的最早阶段发挥作用,对随后的手部形态发生起着不可或缺的作用。

FGFR1 function at the earliest stages of mouse limb development plays an indispensable role in subsequent autopod morphogenesis.

作者信息

Li Cuiling, Xu Xiaoling, Nelson Danielle K, Williams Trevor, Kuehn Michael R, Deng Chu-Xia

机构信息

Genetics of Development and Disease Branch, NIDDK, NIH, 10/9N105, Bethesda, MD 20892, USA.

出版信息

Development. 2005 Nov;132(21):4755-64. doi: 10.1242/dev.02065. Epub 2005 Oct 5.

Abstract

Fibroblast growth factors (FGFs) and their receptors have been implicated in limb development. However, because of early post-implantation lethality associated with fibroblast growth factor receptor 1 (FGFR1) deficiency, the role of this receptor in limb development remains elusive. To overcome embryonic lethality, we have performed a conditional knockout of Fgfr1 using the Cre-LoxP approach. We show that Cre-mediated deletion of Fgfr1 in limb mesenchyme, beginning at a time point slightly after the first sign of initial budding, primarily affects formation of the first one or two digits. In contrast, deletion of Fgfr1 at an earlier stage, prior to thickening of limb mesenchyme, results in more severe defects, characterized by malformation of the AER, diminished Shh expression and the absence of the majority of the autopod skeletal elements. We show that FGFR1 deficiency does not affect cell proliferation. Instead, it triggers cell death and leads to alterations in expression of a number of genes involved in apoptosis and digit patterning, including increased expression of Bmp4, Dkk1 and Alx4, and downregulation of MKP3. These data demonstrate that FGF/FGFR1 signals play indispensable roles in the early stages of limb initiation, eliciting a profound effect on the later stages of limb development, including cell survival, autopod formation and digit patterning.

摘要

成纤维细胞生长因子(FGFs)及其受体与肢体发育有关。然而,由于成纤维细胞生长因子受体1(FGFR1)缺陷相关的植入后早期致死性,该受体在肢体发育中的作用仍不清楚。为了克服胚胎致死性,我们使用Cre-LoxP方法对Fgfr1进行了条件性敲除。我们发现,从最初芽出的第一个迹象出现后不久的时间点开始,Cre介导的肢体间充质中Fgfr1的缺失主要影响最初的一两个指(趾)的形成。相比之下,在肢体间充质增厚之前的更早阶段敲除Fgfr1会导致更严重的缺陷,其特征为顶外胚层嵴(AER)畸形、Shh表达减少以及大多数远节肢体骨骼元素缺失。我们发现FGFR1缺陷不影响细胞增殖。相反,它会引发细胞死亡,并导致许多参与细胞凋亡和指(趾)模式形成的基因表达发生改变,包括Bmp4、Dkk1和Alx4表达增加以及MKP3表达下调。这些数据表明,FGF/FGFR1信号在肢体起始的早期阶段发挥不可或缺的作用,对肢体发育的后期阶段,包括细胞存活、远节肢体形成和指(趾)模式形成产生深远影响。

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