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VEGF not VEGFR2 is associated with the angiogenesis effect of mini-TyrRS/mini-TrpRS in human umbilical vein endothelial cells in hypoxia

机译:VEGF而不是VEGFR2与低氧下人脐静脉内皮细胞中mini-TyrRS / mini-TrpRS的血管生成作用有关

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摘要

The purpose of this study was to determine the relationship between VEGF and mini-TyrRS/mini-TrpRS in angiogenesis in hypoxic culture and to begin to comprehend their mechanism in angiogenesis. We designed a VEGF gene silencing assay by using lentivirus vectors, and then western blotting was used to determine the protein expression of VEGF, VEGFR2 and pVEGFR2 in three groups in hypoxic culture at 3, 6, 12, or 24 h: (1) untransfected human umbilical vein endothelial cells (HUVECs) (Control); (2) pGCSIL-GFP lentivirus vector-transduced HUVECs (Mock); and (3) pGCSIL-shVEGF lentivirus vector-transduced HUVECs (Experimental). We also detected the effects of mini-TyrRS/mini-TrpRS peptides on HUVEC proliferation, migration and tube formation after lentivirus vector transfection and VEGFR2 antibody injection. The results indicated that expression of the mini-TyrRS protein was increased, whereas that of mini-TrpRS was specifically decreased in hypoxic culture both in control and mock groups. However, this trend in protein levels of mini-TyrRS and mini-TrpRS was lost in the experimental group after transduction with the pGCSIL-shVEGF lentivirus vector. The protein expression of VEGF was increased in hypoxic culture both in control and mock groups. After transduction with the pGCSIL-shVEGF lentivirus vector, the protein level of VEGF was noticeably decreased in the experimental group; however, for VEGFR2, the results showed no significant difference in VEGFR2 protein expression in any of the groups. For pVEGFR2, we found a distinct trend from that seen with VEGF. The protein expression of pVEGFR2 was sharply increased in hypoxic culture in the three groups. The addition of mini-TyrRS significantly promoted proliferation, migration and tube formation of HUVECs, while mini-TrpRS inhibited these processes in both control and mock groups in hypoxic culture. However, these effects disappeared after transduction with the pGCSIL-shVEGF lentivirus vector in the experimental group, but no significant difference was observed after VEGFR2 antibody injection. The protein expression of VEGF is similar to that of mini-TyrRS in hypoxic culture and plays an important role in the mini-TyrRS/mini-TrpRS-stimulated proliferation, migration and tube formation of HUVECs in hypoxia. These results also suggest that the change in mini-TyrRS and mini-TrpRS expression in hypoxic culture is not related to VEGFR2 and that some other possible mechanisms, are involved in the phosphorylation of VEGFR2.
机译:这项研究的目的是确定缺氧培养物中VEGF与mini-TyrRS / mini-TrpRS之间的关系,并开始了解它们在血管生成中的机制。我们设计了使用慢病毒载体的VEGF基因沉默检测方法,然后使用蛋白质印迹法在3、6、12或24小时的低氧培养物中确定了三组中VEGF,VEGFR2和pVEGFR2的蛋白表达:(1)未转染人脐静脉内皮细胞(HUVEC)(对照); (2)pGCSIL-GFP慢病毒载体转导的HUVEC(模拟); (3)pGCSIL-shVEGF慢病毒载体转导的HUVEC(实验性)。我们还检测了mini-TyrRS / mini-TrpRS肽对慢病毒载体转染和VEGFR2抗体注射后HUVEC增殖,迁移和管形成的影响。结果表明在对照组和模拟组中,低氧培养中mini-TyrRS蛋白的表达均增加,而mini-TrpRS的表达则降低。然而,在用pGCSIL-shVEGF慢病毒载体转导后,实验组中的mini-TyrRS和mini-TrpRS蛋白水平没有这种趋势。在缺氧培养中,对照组和模拟组的VEGF蛋白表达均增加。用pGCSIL-shVEGF慢病毒载体转导后,实验组VEGF的蛋白水平明显降低。但是,对于VEGFR2,结果显示在任何一组中,VEGFR2蛋白表达均无显着差异。对于pVEGFR2,我们发现与VEGF明显不同的趋势。在低氧培养中,三组中pVEGFR2的蛋白表达急剧增加。 mini-TyrRS的添加显着促进了HUVEC的增殖,迁移和管形成,而mini-TrpRS在低氧培养的对照组和模拟组中均抑制了这些过程。然而,在实验组中用pGCSIL-shVEGF慢病毒载体转导后,这些作用消失了,但是在注射VEGFR2抗体后未观察到显着差异。在缺氧培养中,VEGF的蛋白表达与mini-TyrRS相似,并且在低氧条件下在mini-TyrRS / mini-TrpRS刺激的HUVEC增殖,迁移和管形成中起重要作用。这些结果还表明低氧培养物中mini-TyrRS和mini-TrpRS表达的变化与VEGFR2无关,并且其他一些可能的机制与VEGFR2的磷酸化有关。

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