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蛋白酪氨酸激酶7招募蓬乱蛋白以调节神经嵴迁移。

PTK7 recruits dsh to regulate neural crest migration.

作者信息

Shnitsar Iryna, Borchers Annette

机构信息

Department of Developmental Biochemistry, Center for Molecular Physiology of the Brain (CMPB 37077 Goettingen, Germany.

出版信息

Development. 2008 Dec;135(24):4015-24. doi: 10.1242/dev.023556. Epub 2008 Nov 12.

Abstract

PTK7 regulates planar cell polarity (PCP) signaling during vertebrate neural tube closure and establishment of inner ear hair cell polarity; however, its signaling mechanism is unknown. Here, we demonstrate a new function for PTK7 in Xenopus neural crest migration and use this system in combination with in vitro assays to define the intersection of PTK7 with the non-canonical Wnt signaling pathway that regulates PCP. In vitro, using Xenopus ectodermal explants, we show that PTK7 recruits dishevelled (dsh) to the plasma membrane, a function that is dependent on the PDZ domain of dsh, as well as on the conserved kinase domain of PTK7. Furthermore, endogenous PTK7 is required for frizzled7-mediated dsh localization. Immunoprecipitation experiments confirm that PTK7 can be found in a complex with dsh and frizzled7, suggesting that it cooperates with frizzled to localize dsh. To evaluate the in vivo relevance of the PTK7-mediated dsh localization, we analyzed Xenopus neural crest migration, as loss-of-function of PTK7 inhibits neural crest migration in whole embryos as well as in transplanted neural crest cells. Supporting the in vivo role of PTK7 in the localization of dsh, a PTK7 deletion construct deficient in dsh binding inhibits neural crest migration. Furthermore, the PTK7-mediated membrane localization of a dsh deletion mutant lacking PCP activity inhibits neural crest migration. Thus, PTK7 regulates neural crest migration by recruiting dsh, providing molecular evidence of how PTK7 intersects with the PCP signaling pathway to regulate vertebrate cell movements.

摘要

PTK7在脊椎动物神经管闭合和内耳毛细胞极性建立过程中调节平面细胞极性(PCP)信号通路;然而,其信号传导机制尚不清楚。在此,我们证明了PTK7在非洲爪蟾神经嵴迁移中的新功能,并将该系统与体外试验相结合,以确定PTK7与调节PCP的非经典Wnt信号通路的交叉点。在体外,使用非洲爪蟾外胚层外植体,我们发现PTK7将散乱蛋白(dsh)招募到质膜,该功能依赖于dsh的PDZ结构域以及PTK7保守的激酶结构域。此外,内源性PTK7是卷曲蛋白7介导的dsh定位所必需的。免疫沉淀实验证实PTK7可与dsh和卷曲蛋白7形成复合物,表明它与卷曲蛋白协同作用以使dsh定位。为了评估PTK7介导的dsh定位在体内的相关性,我们分析了非洲爪蟾神经嵴的迁移,因为PTK7功能丧失会抑制全胚胎以及移植的神经嵴细胞中的神经嵴迁移。支持PTK7在dsh定位中的体内作用,一种缺乏dsh结合能力的PTK7缺失构建体抑制神经嵴迁移。此外,PTK7介导的缺乏PCP活性的dsh缺失突变体的膜定位抑制神经嵴迁移。因此,PTK7通过招募dsh来调节神经嵴迁移,为PTK7如何与PCP信号通路交叉以调节脊椎动物细胞运动提供了分子证据。

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