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有限I_-稠密子集与I_-链
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作者 牧立武 《嘉应学院学报》 2004年第3期16-19,共4页
文献[1]证明了半群S含有极小I-稠密子集的充要条件是S满足弱I-极小条件 在此基础上进一步证明了半群S含有有限I-稠密子集的充要条件是S满足I-链条件。
关键词 有限i-稠密子集 i-链 半群 充分必要条件 i-极小条件
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Effect of glucocorticoid on promoter of 11β-hydroxysteroid dehydrogenase I gene
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作者 何平 孙刚 《Journal of Medical Colleges of PLA(China)》 CAS 2003年第3期150-153,共4页
Objective: To study the effect of glucocorticoid on the promoter of the pre-receptor glucocorticoid metabolizing enzyme 11β-hydroxysteroid dehydrogenase type 1 (11β-HSD1) gene. Methods: The 1. 2 kb length sequence u... Objective: To study the effect of glucocorticoid on the promoter of the pre-receptor glucocorticoid metabolizing enzyme 11β-hydroxysteroid dehydrogenase type 1 (11β-HSD1) gene. Methods: The 1. 2 kb length sequence upstream to the transcription start site of the 11β-HSD1 gene was amplified with polymerase chain reaction (PCR) and then was cloned into pBLCAT6 plasmid carrying chloramphenicol acetyltransferase ( CAT) reporter gene. The plasmid pBLCAT6 carrying the promoter and reporter gene was used to transfect HeLa cells to study the regulation of 11β-HSD1 gene expression by glucocorticoids in terms of reporter gene expression. Results: PCR showed that there was a complete alignment of the amplified sequence with the sequence 1. 2 kb upstream to the transcription start site of 11β-HSD1 gene. When cloned into pBLCAT6 plasmid carrying the reporter gene, this part of the promoter is functional in terms of regulation of reporter gene expression upon transfection into HeLa cells. The synthetic glucocorticoid-dexamethasone induced the reporter gene expression in the system described above, which was blocked by glucocorticoid receptor antagonist RU486. Conclusion: Glucocorticoids can modulate the expression of 11β-HSD1 through a mechanism involving activation of GR and interaction of the promoter of 11β-HSD1 gene. 展开更多
关键词 11β- hydroxysteroid dehydrogenase PROMOTER GLUCOCORTICOID
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Inter-chain disulfide bond improved protein trans-splicing increases plasma coagulation activity in C57BL/6 mice following portal vein FVIII gene delivery by dual vectors 被引量:1
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作者 ZHU FuXiang LIU ZeLong +3 位作者 WANG XiaoLei MIAO Jing QU HuiGe CHI XiaoYan 《Science China(Life Sciences)》 SCIE CAS 2013年第3期262-267,共6页
Protein trans-splicing based dual-vector factor VIII (FVIII) gene delivery is adversely affected by less efficiency of protein splicing. We sought to increase the amount of spliced FVIII protein and plasma coagulati... Protein trans-splicing based dual-vector factor VIII (FVIII) gene delivery is adversely affected by less efficiency of protein splicing. We sought to increase the amount of spliced FVIII protein and plasma coagulation activity in dual-vector FVIII transgene in mice by means of strengthening the interaction of inteins, protein splicing elements, thereby facilitating protein trans-splicing. Dual-vector delivery of the FVIII gene in cultured cells showed that replacement of Met226 in the heavy chain and Asp1828 in the light chain with Cys residues could facilitate inter-chain disulfide linking and improve protein trans-splicing, increasing the levels of spliced FVIII protein. In this study, C57BL/6 mice were coadministered dual vectors of intein-fused human FVIII heavy chain and light chain with Cys mutations via portal vein injection into the liver. Forty-eight hours post-injection, plasma was collected and analyzed for FVIII antigen concentration and coagulation activity. These mice showed increased circulating FVIII heavy chain polypeptide (442± 151 ng mL i vs. 305±103 ng mL-1) and coagulation activi- ty (1.46±0.37 IU mL i vs. 0.85±0.23 IU mL-1) compared with control mice co-administered dual vectors expressing the heavy and light chains of wild-type FVIII. Moreover, coagulation activity was similar to that of mice receiving a single vector ex- pressing FVIII (1.79_+0.59 IU mL-l). These findings indicate that improving protein trans-splicing by inter-chain disulfide bonding is a promising approach for increasing the efficacy of dual-vector based FVIII gene transfer. 展开更多
关键词 coagulation factor VIII protein trans-splicing dual-vector gene delivery plasma coagulation activity
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