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CD4-Pseudomonas exotoxin hybrid protein blocks the spread of human immunodeficiency virus infection in vitro and is active against cells expressing the envelope glycoproteins from diverse primate immunodeficiency retroviruses.

机译:CD4-假单胞菌外毒素杂合蛋白在体外阻断人免疫缺陷病毒感染的传播,并且对表达来自各种灵长类免疫缺陷逆转录病毒的包膜糖蛋白的细胞具有活性。

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摘要

We previously described an unusual recombinant protein, designated CD4(178)-PE40, containing the gp120 binding region of human CD4 linked to active regions of Pseudomonas exotoxin A. The ability of this molecule to selectively inhibit protein synthesis in cells expressing the surface envelope glycoprotein of human immunodeficiency virus (HIV) suggested this molecule may be useful in treating infected individuals. To further evaluate its therapeutic potential, several in vitro properties of this hybrid toxin were examined. CD4(178)-PE40 was found to be an extremely potent cytotoxic agent, selectively killing HIV-infected cells with IC50 values around 100 pM. In a coculture system employing mixtures of HIV-infected and -uninfected cells, the hybrid toxin inhibited spread of the infection, as judged by a delay in HIV-induced cell killing and a dramatic suppression of free virus production. Experiments with control recombinant proteins indicated that this protective effect was primarily due to selective killing of the HIV-infected cells, rather than to a simple blocking effect of the CD4 moiety of the hybrid toxin. Using recombinant vaccinia viruses as expression vectors, we found the hybrid toxin to be active against cells expressing the envelope glycoproteins of divergent isolates of HIV-1, as well as HIV-2 and simian immunodeficiency virus. These results provide further support for the therapeutic potential of CD4(178)-PE40 in the treatment of HIV-infected individuals.
机译:我们先前描述了一种异常的重组蛋白,称为CD4(178)-PE40,其包含与假单胞菌外毒素A的活性区相连的人CD4的gp120结合区。该分子在表达表面包膜糖蛋白的细胞中选择性抑制蛋白质合成的能力人类免疫缺陷病毒(HIV)的研究表明该分子可能对治疗受感染的个体有用。为了进一步评估其治疗潜力,研究了这种杂合毒素的几种体外特性。发现CD4(178)-PE40是一种非常有效的细胞毒性剂,可选择性杀死具有50 pM的IC50值的HIV感染细胞。在使用HIV感染和未感染细胞的混合物的共培养系统中,杂种毒素抑制了感染的传播,这可以通过HIV诱导的细胞杀伤延迟和自由病毒产生的显着抑制来判断。用对照重组蛋白进行的实验表明,这种保护作用主要是由于选择性杀死了HIV感染的细胞,而不是由于杂种毒素的CD4部分的简单阻断作用。使用重组牛痘病毒作为表达载体,我们发现杂种毒素对表达HIV-1,HIV-2和猿猴免疫缺陷病毒不同分离株的包膜糖蛋白的细胞具有活性。这些结果为CD4(178)-PE40在治疗HIV感染者中的治疗潜力提供了进一步的支持。

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