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增加小鼠肢芽中Fgf4的表达会导致多指畸形,并挽救因Fgf8功能丧失而产生的骨骼缺陷。

Increasing Fgf4 expression in the mouse limb bud causes polysyndactyly and rescues the skeletal defects that result from loss of Fgf8 function.

作者信息

Lu Pengfei, Minowada George, Martin Gail R

机构信息

Department of Anatomy and Program in Developmental Biology, School of Medicinè University of California at San Francisco San Francisco, CA 94143-2711, USA.

出版信息

Development. 2006 Jan;133(1):33-42. doi: 10.1242/dev.02172. Epub 2005 Nov 24.

Abstract

A major function of the limb bud apical ectodermal ridge (AER) is to produce fibroblast growth factors (FGFs) that signal to the underlying mesenchyme. Previous studies have suggested that of the four FGF genes specifically expressed in the mouse AER, Fgf8 is unique not only in its expression pattern, but also because it is the only such FGF gene that causes limb skeletal abnormalities when individually inactivated. However, when both Fgf8 and Fgf4 are simultaneously inactivated in the AER, the limb does not develop. One possible explanation for these observations is that although both of these FGF family members contribute to limb development, Fgf8 has functions that Fgf4 cannot perform. To test this hypothesis, we used a novel method to substitute Fgf4 for Fgf8 expression in the developing limb bud by concomitantly activating a conditional Fgf4 gain-of-function allele and inactivating an Fgf8 loss-of-function allele in the same cells via Cre-mediated recombination. Our data show that when Fgf4 is expressed in place of Fgf8, all of the skeletal defects caused by inactivation of Fgf8 are rescued, conclusively demonstrating that FGF4 can functionally replace FGF8 in limb skeletal development. We also show that the increase in FGF signaling that occurs when the Fgf4 gain-of-function allele is activated in a wild-type limb bud causes formation of a supernumerary posterior digit (postaxial polydactyly), as well as cutaneous syndactyly between all the digits. These data underscore the importance of controlling the level of FGF gene expression for normal limb development.

摘要

肢体芽顶端外胚层嵴(AER)的一个主要功能是产生成纤维细胞生长因子(FGFs),这些因子向其下方的间充质发出信号。先前的研究表明,在小鼠AER中特异性表达的四个FGF基因中,Fgf8不仅在其表达模式上独特,而且因为它是唯一一个在单独失活时会导致肢体骨骼异常的此类FGF基因。然而,当Fgf8和Fgf4在AER中同时失活时,肢体无法发育。对这些观察结果的一种可能解释是,尽管这两个FGF家族成员都对肢体发育有贡献,但Fgf8具有Fgf4无法执行的功能。为了验证这一假设,我们使用了一种新方法,通过在同一细胞中同时激活条件性Fgf4功能获得等位基因并使Fgf8功能丧失等位基因失活,来在发育中的肢体芽中用Fgf4替代Fgf8的表达。我们的数据表明,当Fgf4替代Fgf8表达时,由Fgf8失活引起的所有骨骼缺陷都得到了挽救,最终证明FGF4在肢体骨骼发育中可以在功能上替代FGF8。我们还表明,当在野生型肢体芽中激活Fgf4功能获得等位基因时发生的FGF信号增加会导致额外的后指(轴后多指)形成,以及所有手指之间的皮肤并指。这些数据强调了控制FGF基因表达水平对正常肢体发育的重要性。

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