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蛋白激酶C激活通过与mRNA结合的Hu抗原R/ELAV蛋白,在周细胞/内皮细胞共培养模型中影响血管内皮生长因子的表达。

Protein kinase C activation affects, via the mRNA-binding Hu-antigen R/ELAV protein, vascular endothelial growth factor expression in a pericytic/endothelial coculture model.

作者信息

Amadio M, Osera C, Lupo G, Motta C, Drago F, Govoni S, Pascale A

机构信息

Department of Drug Sciences, Section of Pharmacology, University of Pavia, Italy.

出版信息

Mol Vis. 2012;18:2153-64. Epub 2012 Aug 1.

Abstract

PURPOSE

To explore whether, following direct contact, there is mutual influence between pericytes (PC) and endothelial cells (EC), and to establish whether protein kinase C (PKC) activation, a condition associated with hyperglycemia, can affect, via the mRNA-binding Hu-antigen R (HuR)/ELAV protein, the expression of vascular endothelial growth factor (VEGF).

METHODS

PC and EC were cultured separately or in direct contact (1:1 ratio), and exposed or not to phorbol esters, a PKC activator (100 nM for 15 min). Barrier integrity was evaluated by measuring endothelial electrical resistance and permeability to sodium fluorescein. Immunocytochemistry was performed to visualize EC and PC in coculture, and to evaluate phorbol 12-myristate-13-acetate (PMA)-induced HuR translocation. PKCβI/βII, HuR, and VEGF protein content was measured with western blotting, VEGF secretion in cell culture medium was evaluated with enzyme-linked immunosorbent assay (ELISA), and quantification of VEGF mRNA was performed with real-time quantitative PCR.

RESULTS

In monocultures, VEGF mRNA/protein basal levels were more elevated in PC than in EC. However, the basal expression of VEGF protein, but not mRNA, in PC and EC was affected by culture conditions. In fact, physical contact with PC upregulated VEGF protein levels in the EC, while VEGF was downregulated in PC cocultured with EC. In this last condition, PKCβII and HuR protein basal levels were also decreased in monocultured PC. Moreover, in basal conditions, the amount of VEGF released from the coculture was higher than from the monocultures. Direct activation of PKCβ induced HuR translocation from the nuclear area to the cytoplasm, and increased the protein levels of the kinase itself, HuR, and VEGF in PC and EC in both culture conditions. Concerning VEGF mRNA, PKC activation induced an increase in PKC levels only in monocultured EC and, conversely, a significant decrease in the same transcript amount in cocultured PC. PMA stimulus also led to a significant increase in VEGF secretion in coculture.

CONCLUSIONS

When cocultured with PC, EC form a significantly tighter barrier than the endothelial monolayer. The physical contact leads to opposite changes in VEGF protein levels in PC and EC. In particular, in basal conditions, cocultured PC seemed to downregulate their own expression of this proproliferating factor, as well as that of PKCβII and HuR, likely to maintain the 1:1 ratio with the cohabiting EC. In mono- and cocultured PC/EC, PKC direct activation led to a similar increase in PKCβI/βII, HuR, and VEGF protein levels, changes that may also occur at early stages of diabetic retinopathy. The release of VEGF in the medium was favored by physical contact between PC and EC and was further increased by PMA exposure. In contrast with the effects on VEGF protein, PKCβ activation induced modifications in VEGF mRNA content that are different in function of the cell type and the culture conditions. These findings suggest that the changes in the VEGF protein and transcript observed in PC/EC can be ascribed to distinct and concomitant pathways. Further studies on this in vitro coculture model would be useful to better understand the PC/EC interaction in physiologic and pathological conditions.

摘要

目的

探讨周细胞(PC)与内皮细胞(EC)直接接触后是否存在相互影响,以及与高血糖相关的蛋白激酶C(PKC)激活是否能通过mRNA结合蛋白Hu抗原R(HuR)/ELAV蛋白影响血管内皮生长因子(VEGF)的表达。

方法

将PC和EC分别培养或直接接触培养(1:1比例),并分别暴露于或不暴露于佛波酯(一种PKC激活剂,100 nM,15分钟)。通过测量内皮电阻和对荧光素钠的通透性来评估屏障完整性。进行免疫细胞化学以观察共培养中的EC和PC,并评估佛波醇12 - 肉豆蔻酸酯13 - 乙酸酯(PMA)诱导的HuR易位。用蛋白质印迹法测量PKCβI/βII、HuR和VEGF蛋白含量,用酶联免疫吸附测定法(ELISA)评估细胞培养基中的VEGF分泌,并用实时定量PCR对VEGF mRNA进行定量。

结果

在单培养中,PC中VEGF mRNA/蛋白的基础水平比EC中更高。然而,PC和EC中VEGF蛋白的基础表达而非mRNA表达受培养条件影响。实际上,与PC的物理接触上调了EC中VEGF蛋白水平,而与EC共培养的PC中VEGF则下调。在最后这种情况下,单培养的PC中PKCβII和HuR蛋白基础水平也降低。此外,在基础条件下,共培养物释放的VEGF量高于单培养物。PKCβ的直接激活诱导HuR从核区易位到细胞质,并增加了两种培养条件下PC和EC中该激酶本身、HuR和VEGF的蛋白水平。关于VEGF mRNA,PKC激活仅在单培养的EC中诱导PKC水平增加,相反,在共培养的PC中相同转录本量显著减少。PMA刺激也导致共培养中VEGF分泌显著增加。

结论

与PC共培养时,EC形成的屏障比内皮单层明显更紧密。物理接触导致PC和EC中VEGF蛋白水平发生相反变化。特别是在基础条件下,共培养的PC似乎下调其自身这种促增殖因子以及PKCβII和HuR的表达,可能是为了与共居的EC维持在1:1比例。在单培养和共培养的PC/EC中,PKC直接激活导致PKCβI/βII、HuR和VEGF蛋白水平类似增加,这些变化可能也发生在糖尿病视网膜病变的早期阶段。PC和EC之间的物理接触有利于VEGF在培养基中的释放,PMA暴露进一步增加了这种释放。与对VEGF蛋白的影响相反,PKCβ激活诱导的VEGF mRNA含量变化因细胞类型和培养条件而异。这些发现表明,在PC/EC中观察到的VEGF蛋白和转录本变化可归因于不同且同时存在的途径。对这种体外共培养模型的进一步研究将有助于更好地理解生理和病理条件下的PC/EC相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8184/3415319/e7868129f032/mv-v18-2153-f1.jpg

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