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Hepatitis B virus replication 被引量:55
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作者 Juergen Beck Michael Nassal 《World Journal of Gastroenterology》 SCIE CAS CSCD 2007年第1期48-64,共17页
Hepadnaviruses, including human hepatitis B virus (HBV), replicate through reverse transcription of an RNA intermediate, the pregenomic RNA (pgRNA). Despite this kinship to retroviruses, there are fundamental diff... Hepadnaviruses, including human hepatitis B virus (HBV), replicate through reverse transcription of an RNA intermediate, the pregenomic RNA (pgRNA). Despite this kinship to retroviruses, there are fundamental differences beyond the fact that hepadnavirions contain DNA instead of RNA. Most peculiar is the initiation of reverse transcription: it occurs by protein-priming, is strictly committed to using an RNA hairpin on the pgRNA, ε, as template, and depends on cellular chaperones; moreover, proper replication can apparently occur only in the specialized environment of intact nucleocapsids. This complexity has hampered an in-depth mechanistic understanding. The recent successful reconstitution in the test tube of active replication initiation complexes from purified components, for duck HBV (DHBV), now allows for the analysis of the biochemistry of hepadnaviral replication at the molecular level. Here we review the current state of knowledge at all steps of the hepadnaviral genome replication cycle, with emphasis on new insights that turned up by the use of such cellfree systems. At this time, they can, unfortunately, not be complemented by three-dimensional structural information on the involved components. However, at least for the ~ RNA element such information is emerging, raising expectations that combining biophysics with biochemistry and genetics will soon provide a powerful integrated approach for solving the many outstanding questions. The ultimate, though most challenging goal, will be to visualize the hepadnaviral reverse transcriptase in the act of synthesizing DNA, which will also have strong implications for drug development. 展开更多
关键词 Chaperone-mediated reverse transcription HBV cccDNA Hepadnavirus P protein Pregenomic RNA protein-priming reverse transcriptase RNA encapsidation signal
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变形链球菌表面蛋白PAc的原核表达及纯化 被引量:6
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作者 卢冠凡 杜霞 +1 位作者 金洁 樊明文 《口腔医学研究》 CAS CSCD 北大核心 2010年第1期60-63,共4页
目的:对在大肠杆菌中表达重组变形链球菌表面蛋白抗原PAc的培养条件进行优化,制备高纯度重组蛋白rPAc。方法:载体构建原核表达载体pET20b(+)-AP对不同培养基、诱导浓度,温度和时间等进行筛选确定最佳条件,采用亲和层析分离纯化rPAc蛋白... 目的:对在大肠杆菌中表达重组变形链球菌表面蛋白抗原PAc的培养条件进行优化,制备高纯度重组蛋白rPAc。方法:载体构建原核表达载体pET20b(+)-AP对不同培养基、诱导浓度,温度和时间等进行筛选确定最佳条件,采用亲和层析分离纯化rPAc蛋白。结果:含原核表达载体pET20b(+)-AP的大肠杆菌在LB培养基中培养至A600=0.6时,终浓度为1mM的IPTG诱导,30℃继续振荡培养4h,可使rPAc的表达量达到最大。分离纯化的蛋白在SDS-PAGE中显示为单一条带。结论:对PAcA-P区的重组质粒pET20b(+)-AP表达的rPAc经纯化后可用于动物免疫,为探索防龋DNA疫苗pCIA-P的新型免疫策略奠定必要的物质基础。 展开更多
关键词 变形链球菌表面蛋白PAc 重组蛋白 初免-加强免疫DNA疫苗
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