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Expression of the endocannabinoid system in the bi-potential HEL cell line: commitment to the megakaryoblastic lineage by 2-arachidonoylglycerol

机译:内源性大麻素系统在双潜能HEL细胞系中的表达:2-花生四烯酸甘油酯对巨核细胞谱系的承诺

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The role of the endocannabinoid system in haematopoietic cells is not completely understood. We investigated whether human erythroleukemia (HEL) cells were able to bind, metabolise and transport the main endocannabinoids, anandamide (AEA) and 2-arachidonoylglycerol (2-AG). We also investigated whether AEA or 2-AG could modulate HEL differentiation. Although able to internalise both endocannabinoids, HEL cells had the machinery to metabolise 2-AG only, since they were devoid of the enzymes needed to synthesise and degrade AEA. Nonetheless, the intracellular transport of exogenous AEA might be required to activate the vanilloid receptors, with yet unknown implications for vascular biology. On the contrary, 2-AG appeared to play a role in lineage determination. Indeed, 2-AG itself drove HEL cells towards megakaryocytic differentiation, as it enhanced expression of β3 integrin subunit, a megakaryocyte/platelet surface antigen, and glycoprotein VI, a late marker of megakaryocytes; in parallel, it reduced the amount of messenger RNA encoding for glycophorin A, a marker of erythroid phenotype. All these effects were mediated by activation of CB2 cannabinoid receptors that triggered an extracellular signal-regulated kinase-dependent signalling cascade. In addition, classical inducers of megakaryocyte differentiation reduced 2-AG synthesis (although they did not affect the binding efficiency of CB2 receptors), suggesting that levels of this endocannabinoid may be critical for committing HEL cells towards the megakaryocytic lineage.
机译:内源性大麻素系统在造血细胞中的作用尚不完全清楚。我们调查了人类红白血病(HEL)细胞是否能够结合,代谢和转运主要的内源性大麻素,anandamide(AEA)和2-arachidonoylglycerol(2-AG)。我们还研究了AEA或2-AG是否可以调节HEL分化。尽管能够内化两种内源性大麻素,但HEL细胞仅具有代谢2-AG的能力,因为它们缺乏合成和降解AEA所需的酶。尽管如此,可能需要外源性AEA的细胞内转运来激活类香草素受体,但对血管生物学的影响尚不明确。相反,2-AG似乎在谱系确定中起作用。的确,2-AG本身促使HEL细胞向巨核细胞分化,因为它增强了β3整合素亚基(一种巨核细胞/血小板表面抗原)和糖蛋白VI(一种巨核细胞的晚期标记物)的表达。同时,它减少了编码糖蛋白A(一种红细胞表型的标志物)的信使RNA的数量。所有这些作用都是由CB2 大麻素受体的激活介导的,该受体触发了细胞外信号调节的激酶依赖性信号传导级联。此外,经典的巨核细胞分化诱导物降低了2-AG的合成(尽管它们不影响CB2 受体的结合效率),这表明这种大麻素水平可能对将HEL细胞定型为巨核细胞系至关重要。

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