拟南芥丝氨酸/苏氨酸蛋白激酶基因AtSTK的过量表达可以明显提高拟南芥的耐盐性。为进一步研究AtSTK基因表达的调控机制,以拟南芥基因组DNA为模板设计引物,扩增获得AtSTK基因的启动子序列,并构建到报告载体pAbAi,将重组报告载体质粒pAbAi...拟南芥丝氨酸/苏氨酸蛋白激酶基因AtSTK的过量表达可以明显提高拟南芥的耐盐性。为进一步研究AtSTK基因表达的调控机制,以拟南芥基因组DNA为模板设计引物,扩增获得AtSTK基因的启动子序列,并构建到报告载体pAbAi,将重组报告载体质粒pAbAi-HYT利用BstbⅠ进行单酶切线性化,转化酵母菌株Y1H Gold,线性化的pAbAi-HYT整合到基因组中。然后,将纯化的拟南芥双链cDNA、pGADT7-Rec载体共转化含有报告载体pAbAi-HYT的酵母菌,将菌液涂布到含有100 ng/m L Ab A的SD/-Leu培养基上进行阳性克隆的酵母单杂交筛选。通过回复鉴定、序列测定,最终筛选获得了可能参与AtSTK基因表达调控的4个拟南芥基因。测序结果表明,酵母单杂交筛选获得的拟南芥基因AT3G32090含有WRKY转录因子保守结构域,为WRKY类转录因子的一员。因此,AtSTK基因的表达很可能接受MAPK信号传导途径中AT3G32090基因编码的WRKY类转录因子的调控,从而影响拟南芥植株的耐盐性。展开更多
The expression of glucose regulated protein 94 (GRP94)during the treatment of human colorectal carcinoma cell lineClone A cells with sodium butyrate was studied. Sodium butyrate (SB) can cause functional and morpholog...The expression of glucose regulated protein 94 (GRP94)during the treatment of human colorectal carcinoma cell lineClone A cells with sodium butyrate was studied. Sodium butyrate (SB) can cause functional and morphological effects on Clone A cells including growth arrest at Go/G1 stage and cell differentiation as observed by morphological changes, MTT and flow cytometry assays, as well as reduced Grp94 gene expression as shown by Northern blot and Western blot assays. The possible mechanism of the correlation between Grp94 gene expression and tumor growth inhibition and cell differentiation is briefly discussed.展开更多
Our previous study showed that hydroxyurea (Hu) could induce HEL cells to express humanβ-globin gene. However the molecular mechanisms by which the expression of β-globin gene is activated and regulated are poorly u...Our previous study showed that hydroxyurea (Hu) could induce HEL cells to express humanβ-globin gene. However the molecular mechanisms by which the expression of β-globin gene is activated and regulated are poorly understood. Here we show that the binding patterns between the core DNA sequences (HS2 core sequence -10681- -10971 bp , HS3 core sequence -14991- -14716 bp and HS4 core sequence -18586- -18306 bp) of DNase I hypersensitive sites in the human β-globin LCR and nuclear matrix proteins isolated from Hu induced and uninduced HEL cells are quite different. Results demonstrated that nuclear matrix proteins might play important roles in regulating the expression of humanβ-like globin genes through their interaction with HSs (HS2,HS3 and HS4 core sequences) in the LCR. Moreover, the results obtained from the in vitro DNA-matrix binding assay showed that the core DNA sequences of DNase I hypersensitive sites (HS2, HS3 and HS4) were unable to bind to the nuclear matrix isolated from uninduced HEL cells; in addition, HS2 core DNA sequence was capable of binding to the nuclear matrix prepared from Hu-induced HEL cells, while both HS3 and HS4 core DNA sequences could not do so. Results indicated that the HS2 core DNA sequence may be a functional MAR (matrix attachment region). We suggest that the HS2 core DNA sequence binding to the nuclear matrix in Hu-induced HEL cells may open the structure of chromatin to make the LCR accessible to the promoter of β-globin gene and to promote its transcription.展开更多
MDM2 (the product of murine double minute 2 gene) is one of the most important negative regulators of p53,which can binds to p53 and initiates ubiquitin-mediated degradation.Besides,MDM2 also controls the activity of ...MDM2 (the product of murine double minute 2 gene) is one of the most important negative regulators of p53,which can binds to p53 and initiates ubiquitin-mediated degradation.Besides,MDM2 also controls the activity of several cell-cycle regulators,e.g.pRB,p21,E2F1,independently of p53.The important role of MDM2 in cell-cycle regulation indicates it to be a point of interest in cancer research.In recent years,studies revealed that MDM2 participated in the genesis and development of human tumors.The expression levels and activity of MDM2 was associated with the invasion,metastasis,prognosis and more practical,chemosensitivity.MDM2 is becoming a novel biomarker in cancer prognosis and chemosensitivity prediction.展开更多
Nuclear proteins often form punctiform structures, but the precise mechanism for this process is unknown. As a preliminary study, we investigated the aggregation of an HSV-1 immediate-early protein, infected-cell prot...Nuclear proteins often form punctiform structures, but the precise mechanism for this process is unknown. As a preliminary study, we investigated the aggregation of an HSV-1 immediate-early protein, infected-cell protein 22 (ICP22), in the nucleus by observing the localization of ICP22-EGFP fusion protein Results showed that, in high-level expression conditions, ICP22-EGFP gradually concentrates in the nucleus, persists throughout the cell cycle without disaggregation even in the cell division phase, and is finally distributed to daughter cells. We subsequently constructed a mammalian cell expression system, which had tetracycline- dependent transcriptional regulators. Consequently, the location of ICP22-EGFP in the nucleus changed with distinct induction conditions. This suggests that the cellular location of ICP22 is also influenced by promoter regulation, in addition to its own structure. Our findings provide new clues for the investigation of transcriptional regulation of viral genes. In addition, the non-protease reporter system we constructed could be utilized to evaluate the role of intemal ribosome entry sites (IRES) on transcriptional regulation.展开更多
OBJECTIVE: To further characterize the differentiation inducing properties of EDRF1 and demonstrate its functional pathway involved in regulation of globin gene expression. METHODS: By transfecting EDRF1 sense and ant...OBJECTIVE: To further characterize the differentiation inducing properties of EDRF1 and demonstrate its functional pathway involved in regulation of globin gene expression. METHODS: By transfecting EDRF1 sense and antisense constructs into HEL cells, we identified the expression of globin and erythropoietin receptor genes by Northern blot analysis. RT-PCR and EMSA (electrophoresis mobility shift assay) were performed to monitor the expression and DNA-binding activity of erythroid specific transcription factors GATA-1 and NF-E2. RESULTS: It was shown that when EDRF1 was overexpressed, production of alpha-globin increased. In antisense EDRF1, overexpression of HEL cells, significant loss of alpha-, gamma-globin mRNA synthesis was observed. The transcription of endogenous GATA-1 and NF-E2 mRNA expression were maintained at the same levels compared with control experiments. However, the transcription activity of GATA-1 was severely impaired. Expression of erythropoietin receptor gene was not influenced by EDRF1 gene overexpression. CONCLUSION: The results suggested that EDRF1 regulated alpha- and gamma-globin gene synthesis by modulating DNA-binding activity of GATA-1 transcription factor.展开更多
文摘拟南芥丝氨酸/苏氨酸蛋白激酶基因AtSTK的过量表达可以明显提高拟南芥的耐盐性。为进一步研究AtSTK基因表达的调控机制,以拟南芥基因组DNA为模板设计引物,扩增获得AtSTK基因的启动子序列,并构建到报告载体pAbAi,将重组报告载体质粒pAbAi-HYT利用BstbⅠ进行单酶切线性化,转化酵母菌株Y1H Gold,线性化的pAbAi-HYT整合到基因组中。然后,将纯化的拟南芥双链cDNA、pGADT7-Rec载体共转化含有报告载体pAbAi-HYT的酵母菌,将菌液涂布到含有100 ng/m L Ab A的SD/-Leu培养基上进行阳性克隆的酵母单杂交筛选。通过回复鉴定、序列测定,最终筛选获得了可能参与AtSTK基因表达调控的4个拟南芥基因。测序结果表明,酵母单杂交筛选获得的拟南芥基因AT3G32090含有WRKY转录因子保守结构域,为WRKY类转录因子的一员。因此,AtSTK基因的表达很可能接受MAPK信号传导途径中AT3G32090基因编码的WRKY类转录因子的调控,从而影响拟南芥植株的耐盐性。
文摘The expression of glucose regulated protein 94 (GRP94)during the treatment of human colorectal carcinoma cell lineClone A cells with sodium butyrate was studied. Sodium butyrate (SB) can cause functional and morphological effects on Clone A cells including growth arrest at Go/G1 stage and cell differentiation as observed by morphological changes, MTT and flow cytometry assays, as well as reduced Grp94 gene expression as shown by Northern blot and Western blot assays. The possible mechanism of the correlation between Grp94 gene expression and tumor growth inhibition and cell differentiation is briefly discussed.
基金supported by the National Natural Science Foundation of China(Grant No.39893320 and 39870378)the Foundation of the Chinese Academy of Sciences (Grant No. KJ982-J1-618).
文摘Our previous study showed that hydroxyurea (Hu) could induce HEL cells to express humanβ-globin gene. However the molecular mechanisms by which the expression of β-globin gene is activated and regulated are poorly understood. Here we show that the binding patterns between the core DNA sequences (HS2 core sequence -10681- -10971 bp , HS3 core sequence -14991- -14716 bp and HS4 core sequence -18586- -18306 bp) of DNase I hypersensitive sites in the human β-globin LCR and nuclear matrix proteins isolated from Hu induced and uninduced HEL cells are quite different. Results demonstrated that nuclear matrix proteins might play important roles in regulating the expression of humanβ-like globin genes through their interaction with HSs (HS2,HS3 and HS4 core sequences) in the LCR. Moreover, the results obtained from the in vitro DNA-matrix binding assay showed that the core DNA sequences of DNase I hypersensitive sites (HS2, HS3 and HS4) were unable to bind to the nuclear matrix isolated from uninduced HEL cells; in addition, HS2 core DNA sequence was capable of binding to the nuclear matrix prepared from Hu-induced HEL cells, while both HS3 and HS4 core DNA sequences could not do so. Results indicated that the HS2 core DNA sequence may be a functional MAR (matrix attachment region). We suggest that the HS2 core DNA sequence binding to the nuclear matrix in Hu-induced HEL cells may open the structure of chromatin to make the LCR accessible to the promoter of β-globin gene and to promote its transcription.
基金Supported by a grant from the National Natural Sciences Foundation of China (No.200803150007)
文摘MDM2 (the product of murine double minute 2 gene) is one of the most important negative regulators of p53,which can binds to p53 and initiates ubiquitin-mediated degradation.Besides,MDM2 also controls the activity of several cell-cycle regulators,e.g.pRB,p21,E2F1,independently of p53.The important role of MDM2 in cell-cycle regulation indicates it to be a point of interest in cancer research.In recent years,studies revealed that MDM2 participated in the genesis and development of human tumors.The expression levels and activity of MDM2 was associated with the invasion,metastasis,prognosis and more practical,chemosensitivity.MDM2 is becoming a novel biomarker in cancer prognosis and chemosensitivity prediction.
基金The National Natural Science Foundation of China (30670094, 30700028)the Ph.D. Programs Foundation of Ministry of Education of China (2006-0023008)
文摘Nuclear proteins often form punctiform structures, but the precise mechanism for this process is unknown. As a preliminary study, we investigated the aggregation of an HSV-1 immediate-early protein, infected-cell protein 22 (ICP22), in the nucleus by observing the localization of ICP22-EGFP fusion protein Results showed that, in high-level expression conditions, ICP22-EGFP gradually concentrates in the nucleus, persists throughout the cell cycle without disaggregation even in the cell division phase, and is finally distributed to daughter cells. We subsequently constructed a mammalian cell expression system, which had tetracycline- dependent transcriptional regulators. Consequently, the location of ICP22-EGFP in the nucleus changed with distinct induction conditions. This suggests that the cellular location of ICP22 is also influenced by promoter regulation, in addition to its own structure. Our findings provide new clues for the investigation of transcriptional regulation of viral genes. In addition, the non-protease reporter system we constructed could be utilized to evaluate the role of intemal ribosome entry sites (IRES) on transcriptional regulation.
文摘OBJECTIVE: To further characterize the differentiation inducing properties of EDRF1 and demonstrate its functional pathway involved in regulation of globin gene expression. METHODS: By transfecting EDRF1 sense and antisense constructs into HEL cells, we identified the expression of globin and erythropoietin receptor genes by Northern blot analysis. RT-PCR and EMSA (electrophoresis mobility shift assay) were performed to monitor the expression and DNA-binding activity of erythroid specific transcription factors GATA-1 and NF-E2. RESULTS: It was shown that when EDRF1 was overexpressed, production of alpha-globin increased. In antisense EDRF1, overexpression of HEL cells, significant loss of alpha-, gamma-globin mRNA synthesis was observed. The transcription of endogenous GATA-1 and NF-E2 mRNA expression were maintained at the same levels compared with control experiments. However, the transcription activity of GATA-1 was severely impaired. Expression of erythropoietin receptor gene was not influenced by EDRF1 gene overexpression. CONCLUSION: The results suggested that EDRF1 regulated alpha- and gamma-globin gene synthesis by modulating DNA-binding activity of GATA-1 transcription factor.