目录 CONTENTS CHAPTER 1 INTRODUCTION 1 SECTION 1 A BRIEF HISTORY 1 SECTION 2 MOLECULAR BIOLOGY PROMOTE MEDICINE TO THE MOLECULAR LEVEL 11 CHAPTER 2 THE MOLECULAR NATURE OF GENES 16 SECTION 1 THE NATURE OF GENETIC MATERIAL 16 SECTION 2 STRUCTURE OF NUCLEIC ACIDS 21 SECTION 3 NUCLEOSOME AND CHROMATIN ASSEMBLY 27 SECTION 4 PHYSICAL CHEMISTRY OF NUCLEIC ACIDS 35 CHAPTER 3 NATURE AND FUNCTION OF GENES 42 SECTION 1 THE NATURE OF GENES 42 SECTION 2 PROTEIN STRUCTURE AND FUNCTION 43 SECTION 3 OVERVIEW OF GENE EXPRESSION 49 SECTION 4 REPLICATION 57 SECTION 5 MUTATIONS 58 CHAPTER 4 DNA REPLICATION OF PROKARYOTES 62 SECTION 1 GENERAL FEATURES OF PROKARYOTIC DNA REPLICATION 62 SECTION 2 ENZYMOLOGY OF PROKARYOTIC DNA REPLICATION 69 SECTION 3 DETAILED PROCEDURES OF PROKARYOTIC DNA REPLICATION 79 CHAPTER 5 DNA REPLICATION OF EUKARYOTES 92 SECTION 1 FEATURES OF EUKARYOTIC DNA REPLICATION SYSTEM 92 SECTION 2 DETAILED PROCEDURES OF EUKARYOTIC DNA REPLICATION 103 SECTION 3 TELOMERES AND CANCER 109 CHAPTER 6 DNA DAMAGE AND REPAIR 111 SECTION 1 POLYMORPHISM AND MUTATION OF GENETIC MATERIALS 111 SECTION 2 DNA DAMAGE 112 SECTION 3 DNA REPAIR 115 SECTION 4 OUTCOME OF FAILURE TO REPAIR THE DAMAGED DNA 125 CHAPTER 7 TRANSCRIPTION IN PROKARYOTES 130 SECTION 1 COMPONENTS OF THE PROKARYOTIC TRANSCRIPTION SYSTEM 130 SECTION 2 PROCESS OF THE PROKARYOTIC TRANSCRIPTION 133 CHAPTER 8 REGULATION OF PROKARYOTIC TRANSCRIPTION 142 SECTION 1 GENERAL CONSIDERATIONS ON PROTEIN–DNA INTERACTION 142 SECTION 2 OPERONS: FINE CONTROL OF BACTERIAL TRANSCRIPTION 143 CHAPTER 9 TRANSCRIPTION IN EUKARYOTES 164 SECTION 1 THE EUKARYOTIC TRANSCRIPTION SYSTEM 164 SECTION 2 PROCESS OF THE EUKARYOTIC TRANSCRIPTION 179 CHAPTER 10 REGULATION OF TRANSCRIPTION IN EUKARYOTES 193 SECTION 1 TRANSCRIPTIONAL ACTIVATORS: DEFINITION, CATEGORIES AND MECHANISMS 193 SECTION 2 TRANSCRIPTIONAL REPRESSORS 212 SECTION 3 CHROMATIN REMODELING AND TRANSCRIPTION 213 SECTION 4 REGULATION OF TRANSCRIPTION FACTORS 223 SECTION 5 TRANSCRIPTIONAL COACTIVATORS AND COREPRESSORS 224 SECTION 6 SIGNALING PATHWAYS THAT REGULATE TRANSCRIPTION 230 CHAPTER 11 POST-TRANSCRIPTIONAL EVENTS AND REGULATION 238 SECTION 1 RNA SPLICING 238 SECTION 2 CAPPING AND POLYADENYLATION 250 SECTION 3 OTHER POST-TRANSCRIPTIONAL MECHANISMS OF MRNA REGULATION 260 SECTION 4 PROCESSING EVENTS OF OTHER RNAS 269 CHAPTER 12 TRANSLATION 276 SECTION 1 THE CELLULAR APARATUS FOR TRANSLATION 276 SECTION 2 INITIATION OF TRANSLATION 291 SECTION 3 ELONGATION AND TERMINATION OF TRANSLATION 306 CHAPTER 13 POST-TRANSLATIONAL EVENTS 323 SECTION 1 POST-TRANSLATIONAL PROCESSING AND PROTEIN TRAFFICKING 323 SECTION 2 SITE-SPECIFIC MODIFICATION OF PROTEINS 329 SECTION 3 PROTEIN DEGRADATION 336 CHAPTER 14 DNA RECOMBINATION, TRANSPOSITION & EDITING 341 SECTION 1 THE HOMOLOGOUS RECOMBINATION 342 SECTION 2 TRANSPOSITION 348 SECTION 3 GENE EDITING 358 CHAPTER 15 ONCOGENES AND TUMOR SUPPRESSOR GENES 362 SECTION 1 ONCOGENES 362 SECTION 2 TUMOR SUPPRESSOR GENES 372 SECTION 3 COLLABORATIONS OF ONCOGENES AND TUMOR-SUPPRESSOR GENES IN TUMORIGENESIS 381 CHAPTER 16 MOLECULAR CLONING METHODS 384 SECTION 1 GENE CLONING 384 SECTION 2 THE POLYMERASE CHAIN REACTION 396 SECTION 3 EXPRESSING CLONED GENES 398 CHAPTER 17 METHODS FOR STUDYING GENE FUNCTION 403 SECTION 1 MOLECULAR SEPARATIONS 403 SECTION 2 MOLECULAR TOOLS FOR IDENTIFYING GENES 408 SECTION 3 ASSAYING GENE AND GENE PRODUCT INTERACTIONS 422 SECTION 4 ANALYZING GENE FUNCTION IN THE ORGANISM 429 CHAPTER 18 IDENTIFICATION OF DISEASE-RELATED GENES 434 SECTION 1 A ROUTE MAP FOR IDENTIFYING DISEASE GENES 434 SECTION 2 CHROMOSOMAL POSITIONAL CLONING OF DISEASE GENES 434 SECTION 3 CLONING DISEASE GENES INDEPENDENTLY OF THEIR CHROMOSOMAL POSITION 443 SECTION 4 MODELS FOR CLONING DISEASE-RELATED GENES 446 SECTION 5 FUNCTIONAL VALIDATION OF DISEASE GENES 446 CHAPTER 19 GENE DIAGNOSIS 448 SECTION 1 THE CONCEPT AND CHARACTERISTICS OF GENE DIAGNOSIS 448 SECTION 2 THE BASIC TECHNIQUES IN GENE DIAGNOSIS 449 SECTION 3 THE MEDICAL APPLICATION OF GENE DIAGNOSIS 454 CHAPTER 20 GENE THERAPY 459 SECTION 1 STRATEGIES OF GENE THERAPY 459 SECTION 2 PROCEDURES FOR GENE THERAPY 460 SECTION 3 CLINICAL PRACTICE OF GENE THERAPY 477 CHAPTER 21 GENOMICS AND POST-GENOMICS 484 SECTION 1 TECHNIQUES IN GENOMIC SEQUENCING 484 SECTION 2 STUDYING AND COMPARING GENOMIC SEQUENCES 491 SECTION 3 TRANSCRIPTOMICS 497 SECTION 4 PROTEOMICS 503 SECTION 5 OTHER MOLECULAR OMICS STUDY 511 SECTION 6 BIOINFORMATICS 512 INDEX 517
内容摘要 分子生物学是生命科学发展中很重要的前沿领域,也是许多相关学科的理论和技术基础,其在医学研究和医学教育中的重要性更是无论怎样强调也不过分。本书(Textbook of Medical Molecular Biology)作为科学出版社与McGraw-Hill Co.的全套医学教科书合作项目之一,目标是满足医学教育中分子生物学这一核心课程的教学需求。本书读者定位于高等医药院校的来华留学生、特色英文或双语班学生、攻读临床医学专业博士学位学生、研究生和医学院校的青年教师等。
以下为对购买帮助不大的评价