Department of Microbiology, Ctr for Cell Signaling, University of Virginia School of Medicine, Charlottesville, VA, USA.
PLoS One. 2012;7(11):e51130. doi: 10.1371/journal.pone.0051130. Epub 2012 Nov 30.
Several polarity proteins, including Scribble (Scrb) have been implicated in control of vesicle traffic, and in particular the endocytosis of E-cadherin, but through unknown mechanisms. We now show that depletion of Scrb enhances endocytosis of E-cadherin by weakening the E-cadherin-p120catenin interaction. Unexpectedly, however, the internalized E-cadherin is not degraded but accumulates in the Golgi apparatus. Silencing p120-catenin causes degradation of E-cadherin in lysosomes, but degradation is blocked by the co-depletion of Scrb, which diverts the internalized E-cadherin to the Golgi. Loss of Scrb also enhances E-cadherin binding to retromer components, and retromer is required for Golgi accumulation of Scrb, and E-cadherin stability. These data identify a novel and unanticipated function for Scrb in blocking retromer-mediated diversion of E-cadherin to the Golgi. They provide evidence that polarity proteins can modify the intracellular itinerary for endocytosed membrane proteins.
几种极性蛋白,包括 Scribble(Scrb),已被牵涉到控制囊泡运输,特别是 E-cadherin 的内吞作用,但具体机制尚不清楚。我们现在表明,Scrb 的耗竭通过削弱 E-cadherin-p120 连接蛋白的相互作用来增强 E-cadherin 的内吞作用。然而,出乎意料的是,内化的 E-cadherin 不会被降解,而是积累在高尔基器中。沉默 p120-catenin 会导致溶酶体中 E-cadherin 的降解,但 Scrb 的共耗竭会阻断降解,从而将内化的 E-cadherin 转移到高尔基器。Scrb 的缺失也增强了 E-cadherin 与逆行转运体组件的结合,逆行转运体对于 Scrb 和 E-cadherin 的稳定性在高尔基器中的积累是必需的。这些数据确定了 Scrb 在阻止逆行转运体介导的 E-cadherin 向高尔基器转移中的一个新的和意外的功能。它们提供了证据表明极性蛋白可以修饰内吞的膜蛋白的细胞内途径。