首页> 外文期刊>BMC Biochemistry >All Dact (Dapper/Frodo) scaffold proteins dimerize and exhibit conserved interactions with Vangl, Dvl, and serine/threonine kinases
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All Dact (Dapper/Frodo) scaffold proteins dimerize and exhibit conserved interactions with Vangl, Dvl, and serine/threonine kinases

机译:所有Dact(Dapper / Frodo)支架蛋白均二聚化,并显示与Vangl,Dvl和丝氨酸/苏氨酸激酶的保守相互作用

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The Dact family of scaffold proteins was discovered by virtue of binding to Dvl proteins central to Wnt and Planar Cell Polarity (PCP) signaling. Subsequently Dact proteins have been linked to a growing list of potential partners implicated in β-catenin-dependent and β-catenin-independent forms of Wnt and other signaling. To clarify conserved and non-conserved roles for this protein family, we systematically compared molecular interactions of all three murine Dact paralogs by co-immunoprecipitation of proteins recombinantly expressed in cultured human embryonic kidney cells. Every Dact paralog readily formed complexes with the Vangl, Dvl, and CK1δ/ε proteins of species ranging from fruit flies to humans, as well as with PKA and PKC. Dact proteins also formed complexes with themselves and with each other; their conserved N-terminal leucine-zipper domains, which have no known binding partners, were necessary and sufficient for this interaction, suggesting that it reflects leucine-zipper-mediated homo- and hetero-dimerization. We also found weaker, though conserved, interactions of all three Dact paralogs with the catenin superfamily member p120ctn. Complex formation with other previously proposed partners including most other catenins, GSK3, LEF/TCF, HDAC1, and TGFβ receptors was paralog-specific, comparatively weak, and/or more sensitive to empirical conditions. Combined with published functional evidence from targeted knock-out mice, these data support a conserved role for Dact proteins in kinase-regulated biochemistry involving Vangl and Dvl. This strongly suggests that a principal role for all Dact family members is in the PCP pathway or a molecularly related signaling cascade in vertebrates.
机译:通过结合对Wnt和平面细胞极性(PCP)信号重要的Dvl蛋白发现了支架蛋白的Dact家族。随后,Dact蛋白已与越来越多的潜在伴侣相关联,这些伴侣涉及Wnt和其他信号传导的β-catenin依赖性和β-catenin依赖性。为了阐明该蛋白家族的保守和非保守作用,我们通过共免疫沉淀培养在人类胚胎肾细胞中重组表达的蛋白,系统地比较了所有三个鼠类Dact旁系同源物的分子相互作用。每个Dact旁系同源物都容易与果蝇到人类的Vangl,Dvl和CK1δ/ε蛋白以及PKA和PKC形成复合物。 actact蛋白质也与它们自身以及彼此形成复合物。它们的保守的N末端亮氨酸-拉链结构域(没有已知的结合配偶体)对于这种相互作用是必要且充分的,这表明它反映了亮氨酸-拉链介导的同型和异型二聚化。我们还发现,所有三个Dact旁系同源物与catenin超家族成员p120ctn的相互作用均较弱,尽管较为保守。与其他先前提出的伴侣(包括大多数其他连环蛋白,GSK3,LEF / TCF,HDAC1和TGFβ受体)形成的复合物是同源物特异性的,相对较弱,和/或对经验条件更为敏感。结合已发表的靶向敲除小鼠的功能证据,这些数据支持Dact蛋白在涉及Vangl和Dvl的激酶调节的生物化学中的保守作用。这有力地表明,所有Dact家族成员的主要作用是在脊椎动物的PCP途径或分子相关的信号级联中。

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