Two promoters, LTR (long terminal repeat) and IP (internal promoter), exist in genomes of foamy viruses. Cell transfection and transient expression assay demonstrated that: the basal activity of BFV (bovine foamy viru...Two promoters, LTR (long terminal repeat) and IP (internal promoter), exist in genomes of foamy viruses. Cell transfection and transient expression assay demonstrated that: the basal activity of BFV (bovine foamy virus) IP is much higher than that of BFV LTR; transactivator of BFV—Borf 1, which activates gene expression directed by BFV LTR, also functions on BFV IP with an activation fold higher than that on LTR. The results suggest that BFV IP and LTR may regulate viral gene expression by different mechanisms, and that Borf 1 may stimulate BFV IP and LTR in different ways. In addition, an in vivo DNA competition assay demonstrated that a common transcription factor may be involved in both mechanisms of the two promoters.展开更多
用氮吸附技术结合分析电镜技术对水热处理法,氟硅酸铵法和四氯化硅法等不同脱铝方法形成的脱铝 Y 沸石的孔结构进行了表征。水热处理法和四氯化硅法脱铝均匀,产生了均匀的二次孔和均匀的 Si/Al 比。氟硅酸铵法脱铝不均匀。水热处理法 U...用氮吸附技术结合分析电镜技术对水热处理法,氟硅酸铵法和四氯化硅法等不同脱铝方法形成的脱铝 Y 沸石的孔结构进行了表征。水热处理法和四氯化硅法脱铝均匀,产生了均匀的二次孔和均匀的 Si/Al 比。氟硅酸铵法脱铝不均匀。水热处理法 USY 可形成约100×10^(-10)m 的二次孔。四氯化硅脱铝 Y 沸石基本不出现二次(中)孔。四氯化硅法和氟硅酸铵法的脱铝 Y 沸石能保持较高的结晶度。展开更多
文摘Two promoters, LTR (long terminal repeat) and IP (internal promoter), exist in genomes of foamy viruses. Cell transfection and transient expression assay demonstrated that: the basal activity of BFV (bovine foamy virus) IP is much higher than that of BFV LTR; transactivator of BFV—Borf 1, which activates gene expression directed by BFV LTR, also functions on BFV IP with an activation fold higher than that on LTR. The results suggest that BFV IP and LTR may regulate viral gene expression by different mechanisms, and that Borf 1 may stimulate BFV IP and LTR in different ways. In addition, an in vivo DNA competition assay demonstrated that a common transcription factor may be involved in both mechanisms of the two promoters.
文摘用氮吸附技术结合分析电镜技术对水热处理法,氟硅酸铵法和四氯化硅法等不同脱铝方法形成的脱铝 Y 沸石的孔结构进行了表征。水热处理法和四氯化硅法脱铝均匀,产生了均匀的二次孔和均匀的 Si/Al 比。氟硅酸铵法脱铝不均匀。水热处理法 USY 可形成约100×10^(-10)m 的二次孔。四氯化硅脱铝 Y 沸石基本不出现二次(中)孔。四氯化硅法和氟硅酸铵法的脱铝 Y 沸石能保持较高的结晶度。