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Cloning vectors: 克隆载体 to clone a gene in a vector Expression vectors: 表达载体 to express a gene from a vector Integration vectors: 整合载体 to integrate a gene in a genome through a vector Cloning vectors 1 Plasmid vecters 2 Bacteriophage vectors 3 Cosmids & BACs 4 Eukaryotic vectors Cloning vectors: allowing the exogenous DNA to be inserted, stored, and manipulated mainly at DNA level. expression vectors: allowing the exogenous DNA to be inserted, stored, and expressed
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7.1 真核生物的基因结构与转录活性 7. 2 真核基因的转录 7. 3 反式作用因子 7. 4 真核基因转录调控的主要模式 7. 5 其他水平上的基因调控
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(一)名词解释 1.翻译2.密码子3.密码的简并性4.同义密码子5.变偶假说6.移码 突变7.同功受体8.多核糖体 (二)问答题 1.参与蛋白质生物合成体系的组分有哪些?它们具有什么功能? 2.遗传密码是如何破译的? 3.遗传密码有什么特点?
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6. 1 原核基因表达调控总论 6. 2 乳糖操纵子与负控诱导系统 6. 3 色氨酸操纵子与负控阻遏系统 6. 4 其他操纵子 6. 5 固氮基因调控 6. 6 转录后调控
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9.1 Introduction 9.2 Transcription is catalyzed by RNA polymerase 9.3 The transcription reaction has three stages 9.4 A stalled RNA polymerase can restart 9.5 RNA polymerase consists of multiple subunits 9.6 RNA Polymerase consists of the core enzyme and sigma factor 9.7 Sigma factor is released at initiation 9.8 Sigma factor controls binding to DNA 9.9 Promoter recognition depends on consensus sequences
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23.1 Introduction 23.2 Group I introns undertake self-splicing by transesterification 23.3 Group I introns form a characteristic secondary structure 23.4 Ribozymes have various catalytic activities 23.5 Some introns code for proteins that sponsor mobility 23.6 The catalytic activity of RNAase P is due to RNA 23.7 Viroids have catalytic activity 23.8 RNA editing occurs at individual bases
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22.1 Introduction 22.2 Nuclear splice junctions are short sequences 22.3 Splice junctions are read in pairs 22.4 Nuclear splicing proceeds through a lariat 22.5 snRNAs are required for splicing 22.6 U1 snRNP initiates splicing 22.7 The E complex can be formed in alternative ways 22.8 5 snRNPs form the spliceosome
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21.1 Introduction 21.2 Response elements identify genes under common regulation 21.3 There are many types of DNA-binding domains 21.4 A zinc finger motif is a DNA-binding domain 21.5 Steroid receptors are transcription factors 21.6 Steroid receptors have zinc fingers 21.7 Binding to the response element is activated by ligand-binding 21.8 Steroid receptors recognize response elements by a combinatorial code
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20.1 Introduction 20.2 Eukaryotic RNA polymerases consist of many subunits 20.3 Promoter elements are defined by mutations and footprinting 20.4 RNA polymerase I has a bipartite promoter 20.5 RNA polymerase III uses both downstream and upstream promoters 20.6 The startpoint for RNA polymerase II 20.7 TBP is a universal factor 20.8 TBP binds DNA in an unusual way
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• 分子生物学和医学分子生物学研 究的主要内容 • 分子生物学的历史 • 分子生物学在医学上的应用 • Nucleic acids DNA Structures &functions RNA Structures &functions • Proteins • Interaction between biopolymer protein-protein interaction DNA-protein interaction
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