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在体外转化生长因子-β调节血管生成过程中内皮细胞相关血管内皮生长因子受体2的释放

Release of endothelial cell associated VEGFR2 during TGF-β modulated angiogenesis in vitro.

作者信息

Jarad M, Kuczynski E A, Morrison J, Viloria-Petit A M, Coomber B L

机构信息

Department of Biomedical Sciences, Ontario Veterinary College, University of Guelph, OVC Room 3645, Guelph, N1G 2W1, ON, Canada.

出版信息

BMC Cell Biol. 2017 Jan 23;18(1):10. doi: 10.1186/s12860-017-0127-y.

Abstract

BACKGROUND

Sprouting angiogenesis requires vascular endothelial proliferation, migration and morphogenesis. The process is regulated by soluble factors, principally vascular endothelial growth factor (VEGF), and via bidirectional signaling through the Jagged/Notch system, leading to assignment of tip cell and stalk cell identity. The cytokine transforming growth factor beta (TGF-β) can either stimulate or inhibit angiogenesis via its differential surface receptor signaling. Here we evaluate changes in expression of angiogenic signaling receptors when bovine aortic endothelial cells were exposed to TGF-β1 under low serum conditions.

RESULTS

TGF-β1 induced a dose dependent inhibition of tip cell assignment and subsequent angiogenesis on Matrigel, maximal at 5.0 ng/ml. This occurred via ALK5-dependent pathways and was accompanied by significant upregulation of the TGF-β co-receptor endoglin, and SMAD2 phosphorylation, but no alteration in Smad1/5 activation. TGF-β1 also induced ALK5-dependent downregulation of Notch1 but not of its ligand delta-like ligand 4. Cell associated VEGFR2 (but not VEGFR1) was significantly downregulated and accompanied by reciprocal upregulation of VEGFR2 in conditioned medium. Quantitative polymerase chain reaction analysis revealed that this soluble VEGFR2 was not generated by a selective shift in mRNA isoform transcription. This VEGFR2 in conditioned medium was full-length protein and was associated with increased soluble HSP-90, consistent with a possible shedding of microvesicles/exosomes.

CONCLUSIONS

Taken together, our results suggest that endothelial cells exposed to TGF-β1 lose both tip and stalk cell identity, possibly mediated by loss of VEGFR2 signaling. The role of these events in physiological and pathological angiogenesis requires further investigation.

摘要

背景

发芽血管生成需要血管内皮细胞增殖、迁移和形态发生。该过程由可溶性因子(主要是血管内皮生长因子(VEGF))调节,并通过锯齿状/Notch系统的双向信号传导,导致顶端细胞和柄细胞身份的确定。细胞因子转化生长因子β(TGF-β)可通过其不同的表面受体信号传导刺激或抑制血管生成。在此,我们评估了在低血清条件下,牛主动脉内皮细胞暴露于TGF-β1时血管生成信号受体表达的变化。

结果

TGF-β1在基质胶上诱导了顶端细胞形成及随后血管生成的剂量依赖性抑制,在5.0 ng/ml时抑制作用最大。这通过ALK5依赖性途径发生,并伴有TGF-β共受体内皮糖蛋白的显著上调以及SMAD2磷酸化,但Smad1/5激活无变化。TGF-β1还诱导了ALK5依赖性的Notch1下调,但其配体Delta样配体4未下调。细胞相关的VEGFR2(而非VEGFR1)显著下调,并伴有条件培养基中VEGFR2的相应上调。定量聚合酶链反应分析表明,这种可溶性VEGFR2不是由mRNA异构体转录的选择性变化产生的。条件培养基中的这种VEGFR2是全长蛋白,并且与可溶性HSP-90增加有关,这与微泡/外泌体可能的脱落一致。

结论

综上所述,我们的结果表明,暴露于TGF-β1的内皮细胞失去了顶端细胞和柄细胞身份,这可能是由VEGFR2信号传导丧失介导的。这些事件在生理和病理血管生成中的作用需要进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50c5/5260130/86f11009dd33/12860_2017_127_Fig1_HTML.jpg

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