Wang Wei, Yin Xiaotao, Li Yunqi, Tian Renli, Yan Jinqi, Gao Jiangping, Yu Jiyun
Department of Urology, General Hospital of PLA, Beijing, China.
Nan Fang Yi Ke Da Xue Xue Bao. 2013 Jan;33(1):13-7.
To obtain 1-4 IgG-like domains of mouse vascular endothelial growth factor receptor 2 (VEGFR2) fusion protein (mVEGFR2D1-4/GST) and identify its antiginicity and biological activity.
The gene of mVEGFR2D1-4 was amplified by RT-PCR from 14-days embryos of Balb/c mice. The PCR product was cloned into pET-42a prokaryotic expression vector to construct the recombinant plasmid pET-42a-mVEGFR2D1-4, which was transformed into E. coli BL21 (DE3) strain for mVEGFR2D1-4/GST expression. The fusion protein was identified by SDS-PAGE and Western blotting, and the antigenicity of the protein purified by affinity chromatography was characterized by ELISA. The VEGF blocking effect of the purified protein in human umbilical vein endothelial cells (HUVECs) were evaluated in in vitro cell cultures.
The mVEGFR2D1-4 gene was obtained, which had an identical sequence to that retrieved in GenBank. The prokaryotic expression vector for mVEGFR2D1-4 was successfully constructed as confirmed by enzyme digestion and DNA sequencing. Both Western blotting and ELISA demonstrated the antigenicity of the purified mVEGFR2D1-4 fusion protein, which obviously blocked the effect of VEGF in promoting HUVEC proliferation in vitro.
The mVEGFR2D1-4/GST fusion protein obtained shows a strong antigenicity and biological activity to facilitate further study of active anti-tumor immunotherapy targeting VEGFR2.
获取小鼠血管内皮生长因子受体2(VEGFR2)融合蛋白(mVEGFR2D1-4/GST)的1-4个IgG样结构域,并鉴定其抗原性和生物学活性。
通过RT-PCR从Balb/c小鼠14天胚胎中扩增mVEGFR2D1-4基因。将PCR产物克隆到pET-42a原核表达载体中构建重组质粒pET-42a-mVEGFR2D1-4,将其转化到大肠杆菌BL21(DE3)菌株中进行mVEGFR2D1-4/GST表达。通过SDS-PAGE和Western印迹鉴定融合蛋白,并用ELISA对亲和层析纯化的蛋白的抗原性进行表征。在体外细胞培养中评估纯化蛋白对人脐静脉内皮细胞(HUVECs)的VEGF阻断作用。
获得了mVEGFR2D1-4基因,其序列与GenBank中检索到的序列相同。经酶切和DNA测序证实成功构建了mVEGFR2D1-4的原核表达载体。Western印迹和ELISA均证明了纯化的mVEGFR2D1-4融合蛋白的抗原性,该蛋白明显阻断了VEGF在体外促进HUVEC增殖的作用。
获得的mVEGFR2D1-4/GST融合蛋白具有较强的抗原性和生物学活性,有助于进一步研究针对VEGFR2的活性抗肿瘤免疫疗法。