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无序蛋白结合“大圆盘”蛋白的“钩”结构域,以激活果蝇中依赖GukHolder的纺锤体定位。

Dishevelled binds the Discs large 'Hook' domain to activate GukHolder-dependent spindle positioning in Drosophila.

作者信息

Garcia Joshua D, Dewey Evan B, Johnston Christopher A

机构信息

Department of Biology, University of New Mexico, Albuquerque, New Mexico, United States of America.

出版信息

PLoS One. 2014 Dec 2;9(12):e114235. doi: 10.1371/journal.pone.0114235. eCollection 2014.

Abstract

Communication between cortical cell polarity cues and the mitotic spindle ensures proper orientation of cell divisions within complex tissues. Defects in mitotic spindle positioning have been linked to various developmental disorders and have recently emerged as a potential contributor to tumorigenesis. Despite the importance of this process to human health, the molecular mechanisms that regulate spindle orientation are not fully understood. Moreover, it remains unclear how diverse cortical polarity complexes might cooperate to influence spindle positioning. We and others have demonstrated spindle orientation roles for Dishevelled (Dsh), a key regulator of planar cell polarity, and Discs large (Dlg), a conserved apico-basal cell polarity regulator, effects which were previously thought to operate within distinct molecular pathways. Here we identify a novel direct interaction between the Dsh-PDZ domain and the alternatively spliced "I3-insert" of the Dlg-Hook domain, thus establishing a potential convergent Dsh/Dlg pathway. Furthermore, we identify a Dlg sequence motif necessary for the Dsh interaction that shares homology to the site of Dsh binding in the Frizzled receptor. Expression of Dsh enhanced Dlg-mediated spindle positioning similar to deletion of the Hook domain. This Dsh-mediated activation was dependent on the Dlg-binding partner, GukHolder (GukH). These results suggest that Dsh binding may regulate core interdomain conformational dynamics previously described for Dlg. Together, our results identify Dlg as an effector of Dsh signaling and demonstrate a Dsh-mediated mechanism for the activation of Dlg/GukH-dependent spindle positioning. Cooperation between these two evolutionarily-conserved cell polarity pathways could have important implications to both the development and maintenance of tissue homeostasis in animals.

摘要

皮层细胞极性线索与有丝分裂纺锤体之间的通讯确保了复杂组织内细胞分裂的正确定向。有丝分裂纺锤体定位缺陷与多种发育障碍有关,最近已成为肿瘤发生的一个潜在因素。尽管这一过程对人类健康很重要,但调节纺锤体定向的分子机制尚未完全了解。此外,目前尚不清楚多种皮层极性复合体如何协同作用以影响纺锤体定位。我们和其他人已经证明,平面细胞极性的关键调节因子Dishevelled(Dsh)和保守的顶-基细胞极性调节因子Discs large(Dlg)在纺锤体定向中发挥作用,而此前认为这些作用是在不同的分子途径中发挥的。在这里,我们发现了Dsh-PDZ结构域与Dlg-Hook结构域的可变剪接“ I3插入”之间存在新的直接相互作用,从而建立了潜在的趋同Dsh / Dlg途径。此外,我们确定了Dsh相互作用所必需的Dlg序列基序,该基序与Frizzled受体中Dsh结合位点具有同源性。Dsh的表达增强了Dlg介导的纺锤体定位,类似于Hook结构域的缺失。这种Dsh介导的激活依赖于Dlg结合伴侣GukHolder(GukH)。这些结果表明,Dsh结合可能调节先前描述的Dlg的核心结构域间构象动力学。总之,我们的结果确定Dlg是Dsh信号传导的效应器,并证明了Dsh介导的激活Dlg / GukH依赖性纺锤体定位的机制。这两个进化保守的细胞极性途径之间的合作可能对动物组织稳态的发育和维持具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1a9/4252473/a7f3ad1cc5fa/pone.0114235.g001.jpg

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