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在天然条件下纯化 TAT-CC-HA 蛋白,并对其转导分析及其对 BCR-ABL 阳性细胞的生物学效应。

Purification of TAT-CC-HA protein under native condition, and its transduction analysis and biological effects on BCR-ABL positive cells.

机构信息

Department of Clinical Hematology, Key Laboratory of Laboratory Medical Diagnostics Designated by the Ministry of Education, Chongqing Medical University, Chongqing 400016, PR China.

出版信息

Biomed Pharmacother. 2011 Jun;65(3):183-92. doi: 10.1016/j.biopha.2011.02.013. Epub 2011 May 20.

Abstract

BCR-ABL oncoprotein is the cause of chronic myeloid leukemia. The homologous oligomerization of BCR-ABL protein mediated by BCR coiled-coil (CC) domain plays an important role in ABL kinase activation. The HIV-1 TAT peptide has been used extensively for the introduction of proteins into cells. We recombinated a TAT-CC-HA protein to interrupt the homologous oligomerization of BCR-ABL. The expression conditions for TAT-CC-HA were optimized. The TAT-CC-HA fusion protein was purified with Ni+-NTA resin. TAT-CC-HA fusion protein was added into the cultures of Ba/F3-p210, 32D-p210, K562, KU812, Ba/F3, 32D, and HL-60 cells. It was found that TAT-CC-HA could transduce into these cells. It was confirmed that TAT-CC-HA fusion protein was internalized by Ba/F3-p210, K562, and Ba/F3 cells and located in the cytoplasm observed by confocal laser scanning fluorescence microscope. The transduction of TAT-CC-HA fusion protein into K562 cells was in a dose-dependent and time-dependent manner. The result of coimmunoprecipitation assay indicated that TAT-CC-HA could interact with BCR-ABL in K562 cells. The effects of TAT-CC-HA fusion protein on cell growth and apoptosis were detected by MTT test and flow cytometry. Our findings suggested that TAT-CC-HA fusion protein could specifically inhibit the growth of BCR-ABL positive cells, and specifically induce apoptosis of BCR-ABL positive cells, while not affect the growth and apoptosis of BCR-ABL negative cells.

摘要

BCR-ABL 癌蛋白是慢性髓性白血病的病因。BCR 卷曲螺旋(CC)结构域介导的 BCR-ABL 蛋白同源寡聚化在 ABL 激酶激活中起重要作用。HIV-1 TAT 肽已被广泛用于将蛋白质导入细胞。我们重组了 TAT-CC-HA 蛋白以中断 BCR-ABL 的同源寡聚化。优化了 TAT-CC-HA 的表达条件。用 Ni+-NTA 树脂纯化 TAT-CC-HA 融合蛋白。将 TAT-CC-HA 融合蛋白加入 Ba/F3-p210、32D-p210、K562、KU812、Ba/F3、32D 和 HL-60 细胞的培养物中。发现 TAT-CC-HA 可以转导这些细胞。通过共聚焦激光扫描荧光显微镜证实 TAT-CC-HA 融合蛋白被 Ba/F3-p210、K562 和 Ba/F3 细胞内化,并位于细胞质中。TAT-CC-HA 融合蛋白转导到 K562 细胞中呈剂量和时间依赖性。免疫共沉淀分析的结果表明,TAT-CC-HA 可以与 K562 细胞中的 BCR-ABL 相互作用。通过 MTT 试验和流式细胞术检测 TAT-CC-HA 融合蛋白对细胞生长和凋亡的影响。我们的研究结果表明,TAT-CC-HA 融合蛋白可以特异性抑制 BCR-ABL 阳性细胞的生长,并特异性诱导 BCR-ABL 阳性细胞凋亡,而不影响 BCR-ABL 阴性细胞的生长和凋亡。

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