为什么单细胞的内吞作用在意哪一面朝上?

Bioarchitecture Pub Date : 2014-03-01 Epub Date: 2014-04-09 DOI:10.4161/bioa.28809
Kristine Schauer, Bruno Goud
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引用次数: 5

摘要

真核细胞显示细胞室的不对称分布依赖于它们的粘附和肌动蛋白和微管细胞骨架的潜在各向异性。使用基于微模式受限黏附的最小细胞培养系统的研究表明,在响应细胞黏附线索的几何形状时,运输区室在单细胞水平上组织良好。扩展我们对细胞摄取过程的分析,我们发现细胞粘附还定义了内吞作用和信号传导的拓扑结构。在微纹细胞内吞过程中,转铁蛋白(Tfn)和表皮生长因子(EGF)集中在不同的细胞部位。Tfn在摄取过程中富集于粘附位点,而EGF的内吞作用仅限于细胞背表面。这种意想不到的背/腹侧不对称是由摄取机制和肌动蛋白动力学调节的。有趣的是,EGF摄取受限导致维持下游信号传递所需的EGF受体激活不对称。基于我们的研究结果,我们提出,从质膜开始的差异分选导致空间上明确定义的空间上不同的细胞内运输路线。我们推测,细胞内运输区室的定位维持了内吞和信号系统之间的重要耦合,使细胞能够感知其环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Why does endocytosis in single cells care which side up?

Why does endocytosis in single cells care which side up?

Why does endocytosis in single cells care which side up?

Why does endocytosis in single cells care which side up?

Eukaryotic cells display an asymmetric distribution of cellular compartments relying on their adhesion and the underlying anisotropy of the actin and microtubule cytoskeleton. Studies using a minimal cell culture system based on confined adhesion on micropatterns have illustrated that trafficking compartments are well organized at the single cell level in response to the geometry of cellular adhesion cues. Expanding our analysis on cellular uptake processes, we have found that cellular adhesion additionally defines the topology of endocytosis and signaling. During endocytosis, transferrin (Tfn) and epidermal growth factor (EGF) concentrate at distinct cellular sites in micropatterned cells. Tfn is enriched in adhesive sites during uptake, whereas EGF endocytosis is restricted to the dorsal cellular surface. This unexpected dorsal/ventral asymmetry is regulated by uptake mechanisms and actin dynamics. Interestingly, restricted EGF uptake leads to asymmetry of EGF receptor activation that is required to sustain downstream signaling. Based on our results, we propose that differential sorting begins at the plasma membrane leading to spatially distinct intracellular trafficking routes that are well defined in space. We speculate that the intracellular positioning of trafficking compartments sustains an important coupling between the endocytic and signaling systems that allows cells to sense their environment.

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