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首页> 外文期刊>Human Molecular Genetics >MPP1 links the Usher protein network and the Crumbs protein complex in the retina.
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MPP1 links the Usher protein network and the Crumbs protein complex in the retina.

机译:MPP1链接Usher蛋白网络和视网膜中的Crumbs蛋白复合体。

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The highly ordered distribution of neurons is an essential feature of a functional mammalian retina. Disruptions in the apico-basal polarity complexes at the outer limiting membrane (OLM) of the retina are associated with retinal patterning defects in vertebrates. We have analyzed the binding repertoire of MPP5/Pals1, a key member of the apico-basal Crumbs polarity complex, that has functionally conserved counterparts in zebrafish (nagie oko) and Drosophila (Stardust). We show that MPP5 interacts with its MAGUK family member MPP1/p55 at the OLM. Mechanistically, this interaction involves heterodimerization of both MAGUK modules in a directional fashion. MPP1 expression in the retina throughout development resembles the expression of whirlin, a multi-PDZ scaffold protein and an important organizer in the Usher protein network. We demonstrate that both proteins interact strongly by both a classical PDZ domain-to-PDZ binding motif (PBM) mechanism, and a mechanism involving internal epitopes. MPP1 and whirlin colocalize in the retina at the OLM, at the outer synaptic layer and at the basal bodies and the ciliary axoneme. In view of the known roles of the Crumbs and Usher protein networks, our findings suggest a novel link of the core developmental processes of actin polymerization and establishment/maintenance of apico-basal cell polarity through MPP1. These processes, essential in neural development and patterning of the retina, may be disrupted in eye disorders that are associated with defects in these protein networks.
机译:神经元的高度有序分布是功能性哺乳动物视网膜的基本特征。视网膜的外部限制膜(OLM)的apico-基础极性复合体的破坏与脊椎动物的视网膜图案缺陷有关。我们已经分析了MPP5 / Pals1的结合库,该库是apico-基底Crumbs极性复合物的关键成员,在斑马鱼(nagie oko)和果蝇(Stardust)中具有功能保守的对应物。我们在OLM上显示了MPP5与它的MAGUK家族成员MPP1 / p55交互。从机理上讲,这种相互作用涉及两种MAGUK模块的定向二聚化。在整个发育过程中,视网膜中MPP1的表达类似于whirlin,多PDZ支架蛋白和Usher蛋白网络中的重要组织者的表达。我们证明这两种蛋白质通过经典的PDZ域到PDZ结合基序(PBM)机制,以及涉及内部表位的机制都强烈相互作用。 MPP1和陀螺蛋白共定位于OLM的视网膜,突触外层以及基体和睫状轴突中。鉴于面包屑和Usher蛋白网络的已知作用,我们的发现表明肌动蛋白聚合的核心发展过程和通过MPP1建立/维持apico-基础细胞极性的新型联系。这些过程在视网膜的神经发育和形成中至关重要,在与这些蛋白质网络缺陷相关的眼部疾病中可能会中断。

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