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Amot 通过一个新颖的脂质结合结构域识别核周内吞体再循环隔室。

Amot recognizes a juxtanuclear endocytic recycling compartment via a novel lipid binding domain.

机构信息

Department of Biochemistry and Molecular Biology, University of Indiana School ofMedicine, Indianapolis, Indiana 46202, USA.

出版信息

J Biol Chem. 2010 Apr 16;285(16):12308-20. doi: 10.1074/jbc.M109.096230. Epub 2010 Jan 14.

Abstract

Polarity proteins promote the asymmetric organization of cells by orienting intracellular sorting mechanisms, such as protein trafficking and cytoskeletal assembly. The localization of individual polarity proteins in turn is often determined by association with factors that mediate contact with other cells or the substratum. This arrangement for the Par and Crb apical polarity complexes at the tight junction is disrupted by the adaptor protein Amot. Amot directly binds the scaffolding proteins Patj and Mupp1 and redistributes them and their binding partners from the plasma membrane to endosomes. However, the mechanism by which Amot is targeted to endosomes is unknown. Here, a novel lipid binding domain within Amot is shown to selectively bind with high affinity to membranes containing monophosphorylated phosphatidylinositols and cholesterol. With similar lipid specificity, Amot inserts into and tubulates membranes in vitro and enlarges perinuclear endosomal compartments in cells. Based on the similar distribution of Amot with cholesterol, Rab11, and Arf6, such membrane interactions are identified at juxtanuclear endocytic recycling compartments. Taken together, these findings indicate that Amot is targeted along with associated apical polarity proteins to the endocytic recycling compartment via this novel membrane binding domain.

摘要

极性蛋白通过定向细胞内的分选机制,如蛋白质运输和细胞骨架组装,促进细胞的不对称组织。反过来,单个极性蛋白的定位通常取决于与介导与其他细胞或基底接触的因子的关联。这种紧密连接处 Par 和 Crb 顶端极性复合物的排列被衔接蛋白 Amot 破坏。Amot 直接结合支架蛋白 Patj 和 Mupp1,并将它们及其结合伙伴从质膜重新分配到内体。然而,Amot 被靶向到内体的机制尚不清楚。本文显示,Amot 中的一个新的脂质结合结构域能够选择性地与含有单磷酸化磷脂酰肌醇和胆固醇的膜高亲和力结合。Amot 在体外具有相似的脂质特异性,插入并管状化膜,并扩大细胞内核周内体隔室。基于 Amot 与胆固醇、Rab11 和 Arf6 的相似分布,在核周近侧内吞再循环隔室中鉴定出这种膜相互作用。总之,这些发现表明,通过这种新的膜结合结构域,Amot 与相关的顶端极性蛋白一起被靶向到内吞再循环隔室。

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