To investigate the effect of cell cycle inhibitor p19ARF on replicative senescence of human diploid cell,recombinant p19ARF eukaryotic expression vector was constructed and p19ARF gene was transfected into human diplo...To investigate the effect of cell cycle inhibitor p19ARF on replicative senescence of human diploid cell,recombinant p19ARF eukaryotic expression vector was constructed and p19ARF gene was transfected into human diploid fibroblasts(WI-38 cells)by liposome-mediated transfection for overexpression.Then,the effects of p19ARF on replicative senescence of WI-38 cells were observed.The results re-vealed that,compared with control cells,the WI-38 cells in which p19ARF gene was introduced showed significant up-regulation of p53 and p21 expression level,decrease of cell generation by 1012 generations,decline of cell growth rate with cell cycle being arrested at G1 phase,increase of positive rate of senescent marker SA-β-gal staining,and decrease of mitochondrial membrane potential.The morphology of the transfected fibroblasts presented the characteristics changes similar to senescent cells.These results indicated that high expression of p19ARF may promote the senescent process of human diploid cells.展开更多
p21Waf/Cip1, p16INK4a and p14ARF (p19ARF in mice) have been demonstrated to be degraded by REGγ-proteasome pathway in an ATP- and ubiquitin-independent manner in vitro. However, the in vivo roles of REGγ mediated-de...p21Waf/Cip1, p16INK4a and p14ARF (p19ARF in mice) have been demonstrated to be degraded by REGγ-proteasome pathway in an ATP- and ubiquitin-independent manner in vitro. However, the in vivo roles of REGγ mediated-degradation of p21Waf/Cip1, p16INK4a and p14ARF remain unclear. In this study, we showed enhanced expression of p21Waf/Cip1, p16INK4a and p19ARF in multiple tissues from REGg–/– mice compared to REGg+/+ mice. Furthermore, we examined the expression of p21Waf/Cip1, p16INK4a and p14ARF in different cancer tissues and observed that the REGγ protein levels were highly expressed in different human cancers while the level of p21Waf/Cip1, p16INK4a and p14ARF appears to be inversely correlated. These results demonstrate that REGγ may exert its function in physiological and pathological conditions through degradation of p21Waf/Cip1, p16INK4a and p14ARF in vivo.展开更多
基金the National Key Basic Research Development Program of China:Basic research for mechanism of senescence and intervention(973 Program)(Grant No.2007CB507400),National Natural Science Foundation of China(Grant Nos.30070288 and 30270505),and creative research group fund from NSFC(Grant No.30121005)
文摘To investigate the effect of cell cycle inhibitor p19ARF on replicative senescence of human diploid cell,recombinant p19ARF eukaryotic expression vector was constructed and p19ARF gene was transfected into human diploid fibroblasts(WI-38 cells)by liposome-mediated transfection for overexpression.Then,the effects of p19ARF on replicative senescence of WI-38 cells were observed.The results re-vealed that,compared with control cells,the WI-38 cells in which p19ARF gene was introduced showed significant up-regulation of p53 and p21 expression level,decrease of cell generation by 1012 generations,decline of cell growth rate with cell cycle being arrested at G1 phase,increase of positive rate of senescent marker SA-β-gal staining,and decrease of mitochondrial membrane potential.The morphology of the transfected fibroblasts presented the characteristics changes similar to senescent cells.These results indicated that high expression of p19ARF may promote the senescent process of human diploid cells.
文摘p21Waf/Cip1, p16INK4a and p14ARF (p19ARF in mice) have been demonstrated to be degraded by REGγ-proteasome pathway in an ATP- and ubiquitin-independent manner in vitro. However, the in vivo roles of REGγ mediated-degradation of p21Waf/Cip1, p16INK4a and p14ARF remain unclear. In this study, we showed enhanced expression of p21Waf/Cip1, p16INK4a and p19ARF in multiple tissues from REGg–/– mice compared to REGg+/+ mice. Furthermore, we examined the expression of p21Waf/Cip1, p16INK4a and p14ARF in different cancer tissues and observed that the REGγ protein levels were highly expressed in different human cancers while the level of p21Waf/Cip1, p16INK4a and p14ARF appears to be inversely correlated. These results demonstrate that REGγ may exert its function in physiological and pathological conditions through degradation of p21Waf/Cip1, p16INK4a and p14ARF in vivo.