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非传统的卷曲蛋白配体和Wnt受体。

Non-conventional Frizzled ligands and Wnt receptors.

作者信息

Hendrickx Marijke, Leyns Luc

机构信息

Vrije Universiteit Brussel, Lab for Cell Genetics, 2 Pleinlaan, B-1050 Brussels, Belgium.

出版信息

Dev Growth Differ. 2008 May;50(4):229-43. doi: 10.1111/j.1440-169X.2008.01016.x.

Abstract

The Wnt family of secreted signaling factors plays numerous roles in embryonic development and in stem cell biology. In the adult, Wnt signaling is involved in tissue homeostasis and mutations that lead to the overexpression of Wnt can be linked to cancer. Wnt signaling is transduced intracellularly by the Frizzled (Fzd) family of receptors. In the canonical pathway, accumulation of beta-catenin and the subsequent formation of a complex with T cell factors (TCF) or lymphoid enhancing factors (Lef) lead to target gene activation. The identification of Ryk as an alternative Wnt receptor and the discovery of the novel Fzd ligands Norrie disease protein (NDP) and R-Spondin, changed the traditional view of Wnts binding to Fzd receptors. Mouse R-Spondin cooperates with Wnt signaling and Low density lipoprotein (LDL) receptor related protein (LRP) to activate beta-catenin dependent gene expression and is involved in processes such as limb and placental development in the mouse. NDP is the product of the Norrie disease gene and controls vascular development in the retina, inner ear and in the female reproductive system during pregnancy. In this review a functional overview of the interactions of the different Wnt and non-Wnt ligands with the Fzd receptors is given as well as a survey of Wnts binding to Ryk and we discuss the biological significance of these interactions.

摘要

分泌型信号因子Wnt家族在胚胎发育和干细胞生物学中发挥着多种作用。在成体中,Wnt信号传导参与组织稳态,导致Wnt过度表达的突变可能与癌症相关。Wnt信号通过卷曲蛋白(Fzd)家族受体在细胞内进行转导。在经典途径中,β-连环蛋白的积累以及随后与T细胞因子(TCF)或淋巴样增强因子(Lef)形成复合物会导致靶基因激活。Ryk作为一种替代性Wnt受体的鉴定以及新型Fzd配体诺里病蛋白(NDP)和R-斯波丁的发现,改变了Wnt与Fzd受体结合的传统观点。小鼠R-斯波丁与Wnt信号传导和低密度脂蛋白(LDL)受体相关蛋白(LRP)协同作用,以激活β-连环蛋白依赖性基因表达,并参与小鼠肢体和胎盘发育等过程。NDP是诺里病基因的产物,在孕期控制视网膜、内耳和女性生殖系统中的血管发育。在本综述中,我们对不同Wnt和非Wnt配体与Fzd受体的相互作用进行了功能概述,并对与Ryk结合的Wnt进行了综述,同时讨论了这些相互作用的生物学意义。

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