The human immunodeficiency virus type 1 (HIV-1) Tat protein strongly transactivates gene expression from the viral long terminal repeat (LTR) and is required for virus efficient replication. Previous studies have shown that cells scrape-loaded in the presence of purified recombinant Tat can absorb the protein in a receptor-independent fashion. Using recombinant Tat in which cysteine residues were blocked by sulfitolysis to prevent disulfide aggregation (S-Tat) we were unable to observe this phenomenon, possibly because of improper protein folding. In this study we report that the block to cellular uptake could be overcome by mixing S-Tat with a cationic liposome, Lipofectin. When mixed with Lipofectin, S-Tat effected a specific, concentration-dependent transactivation of HIV-1 LTR-directed reporter gene activity in Hela Cells. Cellular uptake was confirmed by Western blot analysis with an anti-Tat antibody. The method described utilizes cells plated in a 96-well format, requires only nanogram quantities of S-Tat protein and is much less labor-intensive than assays involving scrape-loading, making it suitable for use as a high-throughput screen for detecting Tat inhibitors. The method may have applications for the analysis of other recombinant proteins that require uptake into intact cells for determination of functionality and presents a general technique for introducing exogenous proteins into cells.

译文

人类免疫缺陷病毒1型 (HIV-1) Tat蛋白强烈反式激活病毒长末端重复序列 (LTR) 的基因表达,并且是病毒有效复制所必需的。先前的研究表明,在存在纯化的重组Tat的情况下,刮擦加载的细胞可以以不依赖于受体的方式吸收蛋白质。使用重组Tat,其中半胱氨酸残基被磺化酶分解阻断以防止二硫键聚集 (S-Tat),我们无法观察到这种现象,可能是由于蛋白质折叠不当。在这项研究中,我们报告说,通过将S-Tat与阳离子脂质体Lipofectin混合可以克服对细胞摄取的阻滞。当与Lipofectin混合时,S-Tat在Hela细胞中实现了HIV-1 LTR导向的报告基因活性的特异性,浓度依赖性反式激活。通过抗Tat抗体的Western印迹分析证实了细胞摄取。所描述的方法利用了以96孔形式铺板的细胞,仅需要纳克量的S-Tat蛋白,并且比涉及刮擦加载的测定的劳动强度低得多,因此适合用作检测Tat的高通量筛选抑制剂。该方法可用于分析需要吸收到完整细胞中以确定功能的其他重组蛋白,并提出了将外源蛋白引入细胞的通用技术。

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