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首页> 外文期刊>Cancer biology & therapy >Targeting of c-Met and urokinase expressing human glioma cell lines by retrovirus vector displaying single-chain variable fragment antibody.
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Targeting of c-Met and urokinase expressing human glioma cell lines by retrovirus vector displaying single-chain variable fragment antibody.

机译:通过展示单链可变片段抗体的逆转录病毒载体靶向表达c-Met和尿激酶的人神经胶质瘤细胞系。

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Amphotropic retroviruses with modified envelope displaying single-chain antibody fragment (scFv) directed against the c-Met receptor were recently generated and found to efficiently and selectively deliver genes into hepatocarcinoma cells. A large proportion of human gliomas also frequently overexpresses c-Met. We therefore explored the possibility of infecting glioma cells using such retroviruses bearing an scFv directed against c-Met. In one construct, a urokinase (uPA) cleavage site was inserted between the scFv and the envelope. We assessed the transduction by these chimeric viruses of a panel of seven human glioma cell lines that we characterized for their c-Met and uPA levels. We found that abundance of the c-Met receptor and viral infection were inversely correlated if we used the retrovirus displaying scFv directed against c-Met, suggesting that the chimeric virus binds preferentially to the c-Met receptor, resulting in virus sequestration. Addition of the uPA site between the scFv moiety and the envelope restored the infectivity of the virus, consistent with a "two-step" infection process: (1) virus binding to the c-Met receptor, (2) cleavage of the scFv moiety by uPA, enabling the virus to dissociate from c-Met and entry into the cells via the Pit-2 receptor. Our study has significant implications for the design of targeting strategies for gliomas expressing high levels of c-Met.
机译:最近产生了具有修饰的包膜的两性逆转录病毒,该包膜显示了针对c-Met受体的单链抗体片段(scFv),并发现该基因可以有效且选择性地将基因传递到肝癌细胞中。很大比例的人类神经胶质瘤也经常过表达c-Met。因此,我们探索了使用带有针对c-Met的scFv的逆转录病毒感染神经胶质瘤细胞的可能性。在一种构建体中,将尿激酶(uPA)切割位点插入scFv与包膜之间。我们评估了这些嵌合病毒对一组七个人类脑胶质瘤细胞系的转导作用,我们以它们的c-Met和uPA水平为特征。我们发现,如果我们使用展示针对c-Met的scFv的逆转录病毒,则c-Met受体的丰度与病毒感染呈负相关,这表明嵌合病毒优先结合c-Met受体,导致病毒被隔离。在scFv部分和包膜之间添加uPA位点可恢复病毒的感染性,这与“两步”感染过程一致:(1)病毒与c-Met受体结合,(2)scFv部分的裂解通过uPA,可以使病毒与c-Met分离并通过Pit-2受体进入细胞。我们的研究对表达高水平c-Met的神经胶质瘤的靶向策略的设计具有重要意义。

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