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Spatial Organization of EphA2 at the Cell-Cell Interface Modulates Trans-Endocytosis of EphrinA1

机译:EphA2在细胞-细胞界面的空间组织调节EphrinA1的跨内吞作用。

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摘要

EphA2 is a receptor tyrosine kinase (RTK) that is sensitive to spatial and mechanical aspects of the cell’s microenvironment. Misregulation of EphA2 occurs in many aggressive cancers. Although its juxtacrine signaling geometry (EphA2’s cognate ligand ephrinA1 is expressed on the surface of an apposing cell) provides a mechanism by which the receptor may experience extracellular forces, this also renders the system challenging to decode. By depositing living cells on synthetic supported lipid membranes displaying ephrinA1, we have reconstituted key features of the juxtacrine EphA2-ephrinA1 signaling system while maintaining the ability to perturb the spatial and mechanical properties of the membrane-cell interface with precision. In addition, we developed a trans-endocytosis assay to monitor internalization of ephrinA1 from a supported membrane into the apposing cell using a quantitative three-dimensional fluorescence microscopy assay. Using this experimental platform to mimic a cell-cell junction, we found that the signaling complex is not efficiently internalized when lateral reorganization at the membrane-cell contact sites is physically hindered. This suggests that EphA2-ephrinA1 trans-endocytosis is sensitive to the mechanical properties of a cell’s microenvironment and may have implications in physical aspects of tumor biology.
机译:EphA2是一种受体酪氨酸激酶(RTK),对细胞微环境的空间和机械方面很敏感。 EphA2的失调发生在许多侵袭性癌症中。尽管其邻分泌信号传导的几何结构(EphA2的同源配体ephrinA1在相对的细胞表面表达)提供了一种机制,使受体可以经受细胞外力,但这也使系统难以解码。通过将活细胞沉积在显示ephrinA1的合成支持脂质膜上,我们重构了并列分泌的EphA2-ephrinA1信号系统的关键特征,同时保持了精确干扰膜-细胞界面的空间和机械性能的能力。此外,我们开发了一种跨内吞作用测定法,可使用定量三维荧光显微镜测定法监测ephrinA1从支持膜进入对位细胞的内在化。使用该实验平台模拟细胞-细胞连接,我们发现当物理上阻碍膜-细胞接触位点的侧向重组时,信号复合物不能有效地内化。这表明EphA2-ephrinA1的内吞作用对细胞微环境的机械特性敏感,并且可能对肿瘤生物学的物理方面有影响。

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