Pleiotrophin expression and role in physiological angiogenesis in vivo: potential involvement of nucleolin.

Q4 Neuroscience
Marina Koutsioumpa, Georgia Drosou, Constantinos Mikelis, Katerina Theochari, Dionussios Vourtsis, Panagiotis Katsoris, Efstathia Giannopoulou, Jose Courty, Christos Petrou, Vassiliki Magafa, Paul Cordopatis, Evangelia Papadimitriou
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引用次数: 36

Abstract

Background: Pleiotrophin (PTN) is a heparin-binding growth factor with significant role(s) in tumour growth and angiogenesis. Although implication of endogenous PTN has been studied in several in vivo models of tumour angiogenesis, its role in physiological angiogenesis has not been addressed. In the present work, we studied expression and functional significance of endogenous PTN during angiogenesis in the chicken embryo chorioallantoic membrane (CAM).

Methods: Using molecular, cellular and biochemical assays, we studied the expression pattern of PTN in CAM and human endothelial cells and its possible interaction with nucleolin (NCL). CAM cells were transfected with a pCDNA3.1 vector, empty (PC) or containing full length cDNA for PTN in antisense orientation (AS-PTN). Angiogenesis was estimated by measuring total vessel length. In vitro, human endothelial cells migration was studied by using a transwell assay, and down-regulation of NCL was performed by using a proper siRNA.

Results: Endogenous PTN mRNA and protein levels, as well as protein levels of its receptor protein tyrosine phosphatase beta/zeta (RPTPβ/ζ) were maximal at early stages, when CAM angiogenesis is active. Application of AS-PTN onto CAM at days of active angiogenesis was not toxic to the tissue and led to dose-dependent decreased expression of endogenous PTN, ERK1/2 activity and angiogenesis. Interestingly, endogenous PTN was also immunolocalized at the endothelial cell nucleus, possibly through interaction with NCL, a protein that has a significant role in the nuclear translocation of many proteins. Down-regulation of NCL by siRNA in human endothelial cells significantly decreased nuclear PTN, verifying this hypothesis. Moreover, it led to abolishment of PTN-induced endothelial cell migration, suggesting, for the first time, that PTN-NCL interaction has a functional significance.

Conclusions: Expression of endogenous PTN correlates with and seems to be involved in angiogenesis of the chicken embryo CAM. Our data suggest that NCL may have a role, increasing the number of growth factors whose angiogenic/tumorigenic activities are mediated by NCL.

Abstract Image

Abstract Image

Abstract Image

多营养蛋白在体内生理性血管生成中的表达和作用:核蛋白的潜在参与。
背景:多营养因子(PTN)是一种肝素结合生长因子,在肿瘤生长和血管生成中起重要作用。尽管内源性PTN的含义已经在几种肿瘤血管生成的体内模型中得到了研究,但其在生理性血管生成中的作用尚未得到解决。本文研究了内源性PTN在鸡胚绒毛尿囊膜血管生成过程中的表达及其功能意义。方法:采用分子、细胞和生化方法,研究PTN在CAM和人内皮细胞中的表达模式及其与核仁蛋白(NCL)的可能相互作用。用pCDNA3.1载体转染CAM细胞,分别为空载体(PC)和含有反义PTN全长cDNA (AS-PTN)。通过测量血管总长度来估计血管新生。体外用transwell法研究人内皮细胞的迁移,用合适的siRNA下调NCL。结果:内源性PTN mRNA和蛋白水平及其受体蛋白酪氨酸磷酸酶β/ζ (RPTPβ/ζ)蛋白水平在CAM血管生成活跃的早期达到最大。在血管生成活跃时,将AS-PTN应用于CAM对组织无毒性,并导致内源性PTN表达、ERK1/2活性和血管生成呈剂量依赖性降低。有趣的是,内源性PTN也在内皮细胞核免疫定位,可能是通过与NCL相互作用,NCL是一种在许多蛋白质的核易位中起重要作用的蛋白质。siRNA在人内皮细胞中下调NCL显著降低核PTN,验证了这一假设。此外,它可以消除ptn诱导的内皮细胞迁移,这首次表明PTN-NCL相互作用具有功能意义。结论:内源性PTN的表达与鸡胚CAM血管生成有关。我们的数据表明,NCL可能有一个作用,增加生长因子的数量,这些生长因子的血管生成/致瘤活性是由NCL介导的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Vascular Cell
Vascular Cell Neuroscience-Neurology
CiteScore
0.70
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