[Apelin信号和血管生理病理]。

Journal de la Societe de biologie Pub Date : 2009-01-01 Epub Date: 2009-06-16 DOI:10.1051/jbio/2009021
Bernard Masri, Loïc van den Berghe, Caroline Sorli, Bernard Knibiehler, Yves Audigier
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引用次数: 25

摘要

血管系统的形成是器官发生的早期步骤,涉及多种信号通路的参与。由同源膜受体解码的细胞外信号的整合协调了不同阶段的细胞事件,从血管生成形成的原始网络到血管生成重塑的乔木网络。我们的实验室发现了一种新的信号通路参与生理性血管生成和肿瘤新生血管。这种被称为apelin的信号通路包括一个G蛋白偶联受体和一个肽配体。在血管的胚胎形成过程中观察到apelin受体的表达,它定位于内皮细胞。在内源性表达apelin受体的HUVECs中,apelin促进ERKs、Akt和p70 S6激酶的磷酸化。此外,在体外,apelin增加这些内皮细胞的增殖。最后,玻璃体内注射尖蛋白诱导视网膜血管网内皮细胞在体内萌发和增殖。因此,所有这些结果促使我们研究细胞尖蛋白信号在肿瘤新生血管中的作用。在两种肿瘤细胞系中,我们发现缺氧诱导了apelin基因的表达。此外,由于这些细胞系的稳定转染导致的apelin基因的过度表达明显加速了体内肿瘤的生长,因为这些肿瘤的血管数量增加了。这些数据的病理相关性已经通过在三分之一的人类肿瘤中apelin基因过表达的表征得到验证。综上所述,apelin信号既参与生理性血管生成,也参与病理性新生血管生成,因此代表了抗血管生成治疗的一个有趣的药理学靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Apelin signalisation and vascular physiopathology].

The formation of the vascular system is an early step in organogenesis that involves the participation of various signalling pathways. Integration of the extracellular signals decoded by their cognate membrane receptors orchestrate the cell events, which act at different stages, from the primitive network formed by vasculogenesis to the arborescent network remodeled by angiogenesis. Our laboratory showed the participation of a new signalling pathway in physiological angiogenesis and tumour neovascularisation. This signalling pathway named apelin comprises a G protein-coupled receptor and a peptide ligand. Expression of apelin receptors is observed during the embryonic formation of blood vessels where it is localized in the endothelium. In HUVECs, which endogenously express apelin receptors, apelin promotes the phosphorylation of ERKs, Akt and p70 S6 Kinase. In addition, apelin increases in vitro the proliferation of these endothelial cells. Finally, injection of apelin in the vitreous induces in vivo the sprouting and the proliferation of endothelial cells from the retinal vascular network. Accordingly, all these results led us to study the role of apelin signalling in tumour neovascularisation. In two tumoral cell lines, we showed that hypoxia induces the expression of apelin gene. In addition, the overexpression of apelin gene resulting from stable transfection of these cell lines clearly accelerates in vivo tumour growth, as a consequence of an increased number of vessels irrigating these tumours. The pathological relevance of these data has been validated by the characterization of an overexpression of apelin gene in one third of human tumours. Taken together, apelin signalling is both involved in physiological angiogenesis and pathological neoangiogenesis, and therefore represents an interesting pharmacological target for anti-angiogenic therapies.

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