本文以HeLa细胞为材料研究一种着丝粒蛋白CENP-B的基因表达与细胞周期及细胞核骨架的关系。将HeLa细胞同步在不同周期时相,以流式细胞光度术、同位素掺入和ACA着丝粒染色等方法检测细胞同步化效果。我们分别提取了各周期时相细胞的总RNA...本文以HeLa细胞为材料研究一种着丝粒蛋白CENP-B的基因表达与细胞周期及细胞核骨架的关系。将HeLa细胞同步在不同周期时相,以流式细胞光度术、同位素掺入和ACA着丝粒染色等方法检测细胞同步化效果。我们分别提取了各周期时相细胞的总RNA和Poly(A)^+RNA,用Dot blot和Northern blot杂交方法研究CENP-B在细胞周期中的表达。结果表明,CENP-B基因在细胞周期中的各个时相均有表达,但表达的强度差别很大:G2期表达最强,S期最弱,G1期中的表达介于二者之间;有意义的是CENP-B基因在M期仍然有较强的表达,表现出其在细胞周期中表达的持续性;这种表达的持续性反映了一种可能性:着丝粒、动粒蛋白不断合成,但直到S期后进入G2期时着丝粒、动粒蛋白到一定临界浓度时才开始组装新的动粒。另外,着丝粒、动粒蛋白的持续合成对着丝粒、动粒功能的发挥可能是必需的。用Bam H I限制性内切酶消化处于不同细胞周期时相的HeLa细胞核骨架,提取与核骨架紧密结合的DNA,用^(32)P标记的cDNA为探针研究CENP-B基因与细胞核骨架的结合与其表达的关系。结果证明,在G2期细胞中CENP-B基因表达最强,与细胞核骨架结合最为紧密,G1期细胞中次之,S期中CENP-B基因与核骨架结合最弱,说明CENP-B基因与细胞核骨架结合的紧密度影响其表达强度。展开更多
In order to study the change of the expression of centromere protein B (CENP-B) caused by antisense transfection, proto-eukaryotically expressed fused protein GST-CENP-B (65 ku) was injected into mouse, and a peculiar...In order to study the change of the expression of centromere protein B (CENP-B) caused by antisense transfection, proto-eukaryotically expressed fused protein GST-CENP-B (65 ku) was injected into mouse, and a peculiar anti-CENP-B serum MaCenpB was collected. A strain of transfected HeLa Tet-off cell HaCb, which contains antisense CENP-B expressing vector pBI-EGFP-as-CenpB, was prepared. Northern blot and Western blot were used to analyze the repression of internal CENP-B in transfected cells. According to the growth curve, the proliferation of HeLa (Tet-off) is repressed by antisense CENP-B, and the multiplication time is prolonged for 32.81 h. The analysis of flow cytometry revealed that, compared with HeLa (Tet-off), the G1 cell population of HaCb is increased (AG1=9%) while S fraction is decreased (AS=11%), but the G2/M phase is nearly unchanged (AG2/M=3%). In the meanwhile, the mi-totic index of HaCb declines greatly compared with that of HeLa (Tet-off). Immunofluorescence showed that the展开更多
This paper investigates the effects of sense and antisense centromere/kinetochore complex protein-B (CENP-B) in cell cycle regulation. Full-length cenpb cDNA was subcloned into pBI-EGFP eukaryotic expression vector in...This paper investigates the effects of sense and antisense centromere/kinetochore complex protein-B (CENP-B) in cell cycle regulation. Full-length cenpb cDNA was subcloned into pBI-EGFP eukaryotic expression vector in both sense and antisense orientation. HeLa-Tet-Off cells were transfected with sense or antisense cenpb vectors. Sense transfection of HeLa-Tet-Off cells resulted in the formation of a large centromere/kinetochore complex, and apoptosis of cells following several times of cell division. A stable an- tisense cenpb transfected cell line, named HACPB, was ob- tained. The centromere/kinetochore complex of HACPB cells became smaller than control HeLa-Tet-Off cells and scat- tered, and the expression of CENP-B was down-regulated. In addition, delayed cell cycle progression, inhibited malignant phenotype, restrained ability of tumor formation in nude mice, and delayed entry from G2/M phase into next G1 phase were observed in HACPB cells. Furthermore, the ex- pression of cyclin-dependent kinases (CDKs), cyclins, and CDK inhibitors (CKIs) were modulated during different phases of the cell cycle. CENP-B is an essential protein for the maintenance of the structure and function of centro- mere/kinetochore complex, and plays important roles in cell cycle regulation.展开更多
文摘本文以HeLa细胞为材料研究一种着丝粒蛋白CENP-B的基因表达与细胞周期及细胞核骨架的关系。将HeLa细胞同步在不同周期时相,以流式细胞光度术、同位素掺入和ACA着丝粒染色等方法检测细胞同步化效果。我们分别提取了各周期时相细胞的总RNA和Poly(A)^+RNA,用Dot blot和Northern blot杂交方法研究CENP-B在细胞周期中的表达。结果表明,CENP-B基因在细胞周期中的各个时相均有表达,但表达的强度差别很大:G2期表达最强,S期最弱,G1期中的表达介于二者之间;有意义的是CENP-B基因在M期仍然有较强的表达,表现出其在细胞周期中表达的持续性;这种表达的持续性反映了一种可能性:着丝粒、动粒蛋白不断合成,但直到S期后进入G2期时着丝粒、动粒蛋白到一定临界浓度时才开始组装新的动粒。另外,着丝粒、动粒蛋白的持续合成对着丝粒、动粒功能的发挥可能是必需的。用Bam H I限制性内切酶消化处于不同细胞周期时相的HeLa细胞核骨架,提取与核骨架紧密结合的DNA,用^(32)P标记的cDNA为探针研究CENP-B基因与细胞核骨架的结合与其表达的关系。结果证明,在G2期细胞中CENP-B基因表达最强,与细胞核骨架结合最为紧密,G1期细胞中次之,S期中CENP-B基因与核骨架结合最弱,说明CENP-B基因与细胞核骨架结合的紧密度影响其表达强度。
基金This work was supported by the State Major Basic Research Development Project of China (Grant No. G1999053901)the National Natural Science Foundation of China (Grant Nos. 39430080 and 39970361).
文摘In order to study the change of the expression of centromere protein B (CENP-B) caused by antisense transfection, proto-eukaryotically expressed fused protein GST-CENP-B (65 ku) was injected into mouse, and a peculiar anti-CENP-B serum MaCenpB was collected. A strain of transfected HeLa Tet-off cell HaCb, which contains antisense CENP-B expressing vector pBI-EGFP-as-CenpB, was prepared. Northern blot and Western blot were used to analyze the repression of internal CENP-B in transfected cells. According to the growth curve, the proliferation of HeLa (Tet-off) is repressed by antisense CENP-B, and the multiplication time is prolonged for 32.81 h. The analysis of flow cytometry revealed that, compared with HeLa (Tet-off), the G1 cell population of HaCb is increased (AG1=9%) while S fraction is decreased (AS=11%), but the G2/M phase is nearly unchanged (AG2/M=3%). In the meanwhile, the mi-totic index of HaCb declines greatly compared with that of HeLa (Tet-off). Immunofluorescence showed that the
基金supported by the National Natural Science Foundation of China(Grant No.39430080).
文摘This paper investigates the effects of sense and antisense centromere/kinetochore complex protein-B (CENP-B) in cell cycle regulation. Full-length cenpb cDNA was subcloned into pBI-EGFP eukaryotic expression vector in both sense and antisense orientation. HeLa-Tet-Off cells were transfected with sense or antisense cenpb vectors. Sense transfection of HeLa-Tet-Off cells resulted in the formation of a large centromere/kinetochore complex, and apoptosis of cells following several times of cell division. A stable an- tisense cenpb transfected cell line, named HACPB, was ob- tained. The centromere/kinetochore complex of HACPB cells became smaller than control HeLa-Tet-Off cells and scat- tered, and the expression of CENP-B was down-regulated. In addition, delayed cell cycle progression, inhibited malignant phenotype, restrained ability of tumor formation in nude mice, and delayed entry from G2/M phase into next G1 phase were observed in HACPB cells. Furthermore, the ex- pression of cyclin-dependent kinases (CDKs), cyclins, and CDK inhibitors (CKIs) were modulated during different phases of the cell cycle. CENP-B is an essential protein for the maintenance of the structure and function of centro- mere/kinetochore complex, and plays important roles in cell cycle regulation.