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剖析细胞核内无翅信号通路:衔接蛋白链对转录共激活因子Pygo的招募

Dissecting nuclear Wingless signalling: recruitment of the transcriptional co-activator Pygopus by a chain of adaptor proteins.

作者信息

Städeli Reto, Basler Konrad

机构信息

Institut für Molekularbiologie, Universität Zürich, Winterthurerstrasse 190, CH-8057 Zürich, Switzerland.

出版信息

Mech Dev. 2005 Nov;122(11):1171-82. doi: 10.1016/j.mod.2005.07.004. Epub 2005 Aug 22.

DOI:10.1016/j.mod.2005.07.004
PMID:16169192
Abstract

Members of the Wingless (Wg)/Wnt family of secreted glycoproteins control cell fate during embryonic development and adult homeostasis. Wnt signals regulate the expression of target genes by activating a conserved signal transduction pathway. Upon receptor activation, the signal is transmitted intracellularly by stabilization of Armadillo (Arm)/beta-catenin. Arm/beta-catenin translocates to the nucleus, interacts with DNA-binding factors of the Pangolin (Pan)/TCF/LEF class and activates transcription of target genes in cooperation with the recently identified proteins Legless/BCL9 (Lgs) and Pygopus (Pygo). Here, we analyse the mode of action of Pan, Arm, Lgs, and Pygo in Drosophila cultured cells. We provide evidence that together these four proteins form a 'chain of adaptors' linking the NH2-terminal homology domain (NHD) of Pygo to the DNA-binding domain of Pan. We show that the NHD has potent transcriptional activation capacity, which differs from that of acidic activator domains and depends on a conserved NPF tripeptide. A single point mutation within this NPF motif abolishes the transcriptional activity of the Pygo NHD in vitro and strongly reduces Wg signalling in vivo. Together, our results suggest that the transcriptional output of Wg pathway activity largely relies on a 'chain of adaptors' design to direct the Pygo NHD to Wg target promoters in an Arm-dependent manner.

摘要

分泌型糖蛋白无翅(Wg)/Wnt家族的成员在胚胎发育和成年体内平衡过程中控制细胞命运。Wnt信号通过激活保守的信号转导途径来调节靶基因的表达。受体激活后,信号通过犰狳(Arm)/β-连环蛋白的稳定在细胞内传递。Arm/β-连环蛋白转位到细胞核,与穿山甲(Pan)/TCF/LEF类的DNA结合因子相互作用,并与最近鉴定出的无腿/BCL9(Lgs)和矮胖蛋白(Pygo)蛋白协同激活靶基因的转录。在这里,我们分析了Pan、Arm、Lgs和Pygo在果蝇培养细胞中的作用模式。我们提供的证据表明,这四种蛋白共同形成了一个“衔接子链”,将Pygo的NH2末端同源结构域(NHD)与Pan的DNA结合结构域连接起来。我们表明,NHD具有强大的转录激活能力,这与酸性激活结构域不同,并且依赖于保守的NPF三肽。该NPF基序内的单点突变消除了Pygo NHD在体外的转录活性,并在体内强烈降低Wg信号。总之,我们的结果表明,Wg途径活性的转录输出很大程度上依赖于一种“衔接子链”设计,以Arm依赖的方式将Pygo NHD导向Wg靶启动子。

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