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Expression of soluble, biologically active recombinant human tumstatin in Escherichia coli.

机译:可溶性,具有生物活性的重组人胃抑素在大肠杆菌中的表达。

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Tumstatin, a 28-kDa C-terminal fragment of collagen IV, is a potent anti-angiogenic protein and inhibitor of tumour growth. Recombinant tumstatin was prepared from Escherichia coli deposited as insoluble, inactive inclusion bodies. In the present study, we produced soluble and biologically active recombinant human tumstatin in E. coli by the coding region of tumstatin being linked to the 3'-end of the maltose-binding protein (MBP) gene. The fusion protein was expressed as the soluble form after induction by isopropylthio-beta-D-galactoside (IPTG). MBP-tumstatin was purified by amylose affinity chromatography. MBP can be removed by digestion with factor Xa. Expression could represent 20% of the total soluble protein in E. coli, allowing approximately 8.6 mg of highly purified protein to be obtained per litre of bacterial culture. The purified tumstatin specifically inhibited the proliferation of endothelial cells in a dose-dependent manner. Annexin V-FITC apoptotic assay showed that recombinant tumstatin induced significant increase of apoptotic endothelial cells after 20 h of exposure to 20 microg/ml tumstatin, and when tumstatin was incubated on the chicken embryo, chorioallantoic membrane at doses of 1-15 microg, there was a dramatic decrease in the microvasculature allantoids of chicken embryos neovascular vessel test in vivo demonstrated that tumstatin treatment at doses of 1-15 microg gives rise to dramatically decrease the number of neovascular vessel. Our study provides a feasible and convenient approach to produce soluble and biologically active tumstatin.
机译:Tumstatin是胶原IV的28 kDa C端片段,是一种有效的抗血管生成蛋白,是肿瘤生长的抑制剂。从作为不溶性,非活性包涵体沉积的大肠杆菌制备重组抑素。在本研究中,我们通过将抑菌素的编码区连接到麦芽糖结合蛋白(MBP)基因的3'端,在大肠杆菌中生产了可溶性和具有生物活性的重组人抑素。通过异丙硫基-β-D-半乳糖苷(IPTG)诱导后,融合蛋白表达为可溶形式。 MBP-tumstatin通过直链淀粉亲和色谱纯化。 MBP可以通过Xa因子消化去除。表达可代表大肠杆菌中总可溶性蛋白的20%,从而每升细菌培养物可获得约8.6 mg的高度纯化的蛋白。纯化的肿瘤抑素以剂量依赖性方式特异性抑制内皮细胞的增殖。 Annexin V-FITC凋亡试验表明,在暴露于20 microg / ml tumstatin的20 h后,重组tumstatin诱导凋亡的内皮细胞显着增加,并且当tumstatin以1-15 microg的剂量在鸡胚,绒膜尿囊上孵育时体内鸡胚新血管试验的微脉管系统类固醇含量显着下降表明,他汀类药物治疗剂量为1-15微克可显着减少新血管的数量。我们的研究提供了一种可行且方便的方法来生产可溶性和生物活性的他汀类药物。

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