Max Planck Institute for Molecular Cell Biology and Genetics, Pfotenhauerstrasse 108, 01307 Dresden, Germany.
Curr Biol. 2011 Jul 12;21(13):1111-7. doi: 10.1016/j.cub.2011.05.007. Epub 2011 Jun 23.
The evolutionarily conserved apical determinant Crumbs (Crb) is essential for maintaining apicobasal polarity and integrity of many epithelial tissues [1]. Crb levels are crucial for cell polarity and homeostasis, yet strikingly little is known about its trafficking or the mechanism of its apical localization. Using a newly established, liposome-based system described here, we determined Crb to be an interaction partner and cargo of the retromer complex. Retromer is essential for the retrograde transport of numerous transmembrane proteins from endosomes to the trans-Golgi network (TGN) and is conserved between plants, fungi, and animals [2]. We show that loss of retromer function results in a substantial reduction of Crb in Drosophila larvae, wing discs, and the follicle epithelium. Moreover, loss of retromer phenocopies loss of crb by preventing apical localization of key polarity molecules, such as atypical protein kinase C (aPKC) and Par6 in the follicular epithelium, an effect that can be rescued by overexpression of Crb. Additionally, loss of retromer results in multilayering of the follicular epithelium, indicating that epithelial integrity is severely compromised. Our data reveal a mechanism for Crb trafficking by retromer that is vital for maintaining Crb levels and localization. We also show a novel function for retromer in maintaining epithelial cell polarity.
进化保守的顶端决定因素 Crumbs(Crb)对于维持许多上皮组织的顶端-基底极性和完整性是必不可少的。Crb 水平对于细胞极性和内稳态至关重要,但关于其运输或顶端定位的机制却知之甚少。使用这里新建立的基于脂质体的系统,我们确定 Crb 是逆行转运复合物(retromer complex)的相互作用伙伴和 cargo。逆行转运复合物对于从内体到 Trans-Golgi Network(TGN)的许多跨膜蛋白的逆行运输是必不可少的,并且在植物、真菌和动物之间是保守的。我们表明,逆行转运复合物功能的丧失会导致果蝇幼虫、翅膀盘和滤泡上皮中 Crb 的大量减少。此外,逆行转运复合物的缺失通过阻止关键极性分子(如滤泡上皮中的非典型蛋白激酶 C(aPKC)和 Par6)的顶端定位来模拟 crb 的缺失,而过表达 Crb 可以挽救这种缺失。此外,逆行转运复合物的缺失会导致滤泡上皮的多层化,表明上皮完整性受到严重损害。我们的数据揭示了逆行转运复合物介导的 Crb 运输的机制,这对于维持 Crb 水平和定位至关重要。我们还显示了逆行转运复合物在维持上皮细胞极性方面的新功能。