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首页> 外文期刊>Current Biology: CB >A conserved oligomerization domain in Drosophila Bazooka/PAR-3 is important for apical localization and epithelial polarity
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A conserved oligomerization domain in Drosophila Bazooka/PAR-3 is important for apical localization and epithelial polarity

机译:果蝇火箭炮/ PAR-3中保守的寡聚域对根尖定位和上皮极性很重要。

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摘要

The PAR-3/PAR-6/aPKC complex is required to establish polarity in many different cell types, including the C. elegans zygote and epithelial and neuronal cells in Drosophila and mammals [1]. In each context, the components of this complex display a mutually dependent asymmetric cortical localization. PAR-6 is a direct effector of Rho family GTPases and binds to and regulates aPKC [2]. Mammalian PAR-3 (mPar3) can associate with transmembrane proteins and may link the complex to the membrane [3-5], but this can account for only part of the requirement for this protein in the complex. Here we investigate the function of a novel conserved domain, CR1, of PAR-3 using computational, biochemical, and genetic approaches. Sequence-structure comparison by FUGUE [6] predicts that CR1 has the same structural fold as a bacterial oligomerization domain. We show that CR1 of the Drosophila homolog, Bazooka (BAZ), mediates oligomerization in vitro and in vivo. Furthermore, deletion of CRII disrupts BAZ localization in both epithelial cells and the germline and strongly impairs BAZ function in epithelial polarity. These results indicate that this domain is important for the localization and activity of the PAR-3/PAR6/aPKC complex and define a new role for PAR-3 in assembling higher order protein complexes. [References: 20]
机译:需要PAR-3 / PAR-6 / aPKC复合物才能在许多不同的细胞类型中建立极性,包括果蝇和哺乳动物中的秀丽隐杆线虫合子,上皮细胞和神经元细胞[1]。在每种情况下,该复合物的成分均显示出相互依赖的不对称皮质局部。 PAR-6是Rho家族GTPases的直接效应子,与aPKC结合并对其进行调节[2]。哺乳动物的PAR-3(mPar3)可以与跨膜蛋白结合并将复合物连接到膜上[3-5],但这仅占复合物中该蛋白质需求的一部分。在这里,我们使用计算,生化和遗传方法研究PAR-3的新型保守域CR1的功能。 FUGUE [6]进行的序列结构比较预测CR1具有与细菌寡聚化结构域相同的结构折叠。我们显示,果蝇同源物,火箭筒(BAZ)的CR1介导体外和体内的寡聚。此外,CRII的缺失会破坏BAZ在上皮细胞和种系中的定位,并严重损害BAZ在上皮极性中的功能。这些结果表明,该结构域对于PAR-3 / PAR6 / aPKC复合物的定位和活性很重要,并为PAR-3组装更高阶的蛋白质复合物定义了新的作用。 [参考:20]

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