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VE-cadherin regulates EphA2 in aggressive melanoma cells through a novel signaling pathway: implications for vasculogenic mimicry.

机译:VE-钙粘着蛋白通过一种新的信号传导途径调节侵袭性黑色素瘤细胞中的EphA2:对血管生成模拟的影响。

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摘要

The formation of matrix-rich, vasculogenic-like networks, termed vasculogenic mimicry (VM), is a unique process characteristic of highly aggressive melanoma cells found to express genes previously thought to be exclusively associated with endothelial and epithelial cells. This study contributes new observations demonstrating that VE-cadherin can regulate the expression of EphA2 at the cell membrane by mediating its ability to become phosphorylated through interactions with its membrane bound ligand, ephrin-A1. VE-cadherin and EphA2 were also found to be colocalized in cell-cell adhesion junctions, both in vitro and in vivo. Immunoprecipitation studies revealed that EphA2 and VE-cadherin could interact, directly and/or indirectly, during VM. Furthermore, there was no change in the colocalization of EphA2 and VE-cadherin at cell-cell adhesion sites when EphA2 was phosphorylated on tyrosine residues. Although transient knockout of EphA2 expression did not alter VE-cadherin localization, transient knockoutof VE-cadherin expression resulted in the reorganization of EphA2 on the cells' surface, an accumulation of EphA2 in the cytoplasm, and subsequent dephosphorylation of EphA2. Collectively, these results suggest that VE-cadherin and EphA2 act in a coordinated manner as a key regulatory element in the process of melanoma VM and illuminate a novel signaling pathway that could be potentially exploited for therapeutic intervention.
机译:富含血管的类血管生成网络的形成,称为血管生成模拟(VM),是高度侵袭性黑色素瘤细胞的独特过程特征,发现该黑色素瘤细胞表达以前认为与内皮细胞和上皮细胞专门相关的基因。这项研究提供了新的证据,表明VE-钙粘蛋白可以通过介导其与膜结合配体ephrin-A1相互作用而使其磷酸化的能力,从而调节EphA2在细胞膜上的表达。还发现VE-钙粘蛋白和EphA2在体外和体内共定位在细胞-细胞粘附连接中。免疫沉淀研究表明,EphA2和VE-钙黏着蛋白可以在VM期间直接和/或间接相互作用。此外,当EphA2在酪氨酸残基上被磷酸化时,EphA2和VE-钙粘着蛋白在细胞间粘附位点的共定位没有改变。尽管瞬时敲除EphA2表达不会改变VE-钙黏着蛋白的定位,但瞬时敲除VE-钙黏着蛋白表达会导致EphA2在细胞表面重组,在细胞质中积累EphA2,并随后使EphA2去磷酸化。总的来说,这些结果表明VE-钙黏着蛋白和EphA2以协调的方式充当黑色素瘤VM过程中的关键调控元件,并阐明了可能被用于治疗干预的新型信号通路。

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