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Molecular Life Sciences

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Cover of 'Molecular Life Sciences'

Table of Contents

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    Book Overview
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    Chapter 2 Primary Structure
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    Chapter 3 Classic Approaches to Sequence Determination
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    Chapter 4 Mass Spectrometry Approaches
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    Chapter 5 Using Sequence Information to Identify Motifs
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    Chapter 6 Using Sequence Information to Assess Evolutionary Relationships
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    Chapter 7 Predictions from Sequence
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    Chapter 8 Secondary Structure
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    Chapter 9 Theoretical Aspects of Secondary Structure
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    Chapter 10 Experimental Assessment of Secondary Structure by Circular Dichroism
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    Chapter 15 Tertiary Structure Domains, Folds, and Motifs
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    Chapter 16 Forces Maintaining the Stability of Tertiary Structure
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    Chapter 19 Protein Domain Structure Evolution
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    Chapter 21 Why Do Proteins Have Quaternary Structure: Non-allosteric Proteins
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    Chapter 22 Allostery and Quaternary Structure
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    Chapter 28 Obtaining Crystals
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    Chapter 31 NMR Basis for Biomolecular Structure (Theory)
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    Chapter 32 NMR Approaches to Determine Protein Structure
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    Chapter 34 Gene Regulation
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    Chapter 35 Evolution of Gene Regulatory Networks
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    Chapter 36 Prokaryotic Gene Regulation by Sigma Factors and RNA Polymerase
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    Chapter 37 Prokaryotic Gene Regulation by Small RNAs
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    Chapter 38 Transduction of Environmental Signals by Prokaryotic Two-Component Regulatory Systems
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    Chapter 39 Role of Chromatin Remodeling and DNA Modification in Transcriptional Regulation
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    Chapter 40 Cis -Regulation of Eukaryotic Transcription
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    Chapter 41 Co-transcriptional mRNA Processing in Eukaryotes
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    Chapter 42 Regulation of Cytoplasmic mRNA
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    Chapter 43 Differential Equations and Chemical Master Equation Models for Gene Regulatory Networks
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    Chapter 45 Genomic Imprinting in Mammals: Memories of Generations Past
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    Chapter 53 DNA Replication
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    Chapter 54 Bacterial DNA Replicases
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    Chapter 55 Eukaryotic DNA Replicases
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    Chapter 56 Replication Origin of E. coli and the Mechanism of Initiation
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    Chapter 57 Replicative DNA Helicases and Primases
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    Chapter 60 Types of DNA Damage
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    Chapter 61 DNA Repair Polymerases
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    Chapter 62 Nucleotide Excision Repair
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    Chapter 63 Double-Strand Break Repair
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    Chapter 64 Mismatch Repair
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    Chapter 67 Rad51 and Dmc1 Recombinases
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    Chapter 74 Mechanisms of DNA Recombination
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    Chapter 75 Meiotic Recombination
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    Chapter 75 Meiotic Recombination
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    Chapter 76 Regulation of DSB Repair by Cell Cycle Signaling and the DNA Damage Response
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    Chapter 77 Chromatin Remodeling During Homologous Recombination Repair in Saccharomyces Cerevisiae
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    Chapter 78 Classical and Alternative End Joining
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    Chapter 79 Roles of Post-translational Modifications in DNA Double-Strand Break Repair
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    Chapter 80 Homologous Recombination in Lesion Bypass
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    Chapter 82 Single-Strand Annealing
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    Chapter 84 Characteristics of Enzymes and Cloning Vectors Used to Create Recombinant DNA
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    Chapter 86 Plasmid Cloning Vectors
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    Chapter 87 Bacteriophage and Viral Cloning Vectors
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    Chapter 88 Restriction Endonucleases
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    Chapter 89 Some Key Enzymes Used in Cloning
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    Chapter 91 Artificial Chromosomes
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    Chapter 92 Plasmid Incompatibility
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    Chapter 92 Cloning Vector Compatibility
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    Chapter 93 Selection with Antibiotics
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    Chapter 94 Blue-White Selection
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    Chapter 95 Polymerase Chain Reaction
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    Chapter 96 Recombineering
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    Chapter 98 Artificial Endonucleases for Genome Editing
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    Chapter 99 Genes and Genomes: Structure
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    Chapter 100 Plant Genomes: From Sequence to Function Across Evolutionary Time
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    Chapter 102 Plant Genome Sequencing Methods
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    Chapter 103 Methods for Plant Genome Annotation
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    Chapter 104 Plant Transposable Elements: Beyond Insertions and Interruptions
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    Chapter 105 Evolution of Plant Genomes
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    Chapter 106 Genomic Sequence and Structural Diversity in Plants
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    Chapter 107 Plasmid Genomes, Introduction to
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    Chapter 109 Plasmids as Secondary Chromosomes
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    Chapter 110 Mitochondrial Genomes
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    Chapter 111 Mitochondrial Genomes in Invertebrate Animals
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    Chapter 112 Mitochondrial Genomes in Vertebrate Animals
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    Chapter 113 Mitochondrial Genomes in Fungi
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    Chapter 114 Mitochondrial Genomes in Amoebozoa
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    Chapter 115 Mitochondrial Genomes of Green, Red, and Glaucophyte Algae
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    Chapter 116 Mitochondrial Genomes of Chromists (Stramenopiles, Haptophytes, and Cryptophytes)
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    Chapter 117 Mitochondrial Genomes in Alveolates
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    Chapter 118 Mitochondrial Genomes of Excavata
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    Chapter 120 Innate Immunity
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    Chapter 121 Innate B Cells
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    Chapter 122 Topoisomerases and Cancer
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    Chapter 123 DnaX Complex Composition and Assembly Within Cells
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    Chapter 123 DnaX Complex Composition and Assembly Within Cells
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    Chapter 124 Many Bacteria Use a Special Mutagenic Pol III in Place of Pol V
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    Chapter 127 DNA Topology and Topoisomerases
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    Chapter 128 Mechanism of Initiation Complex Formation
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    Chapter 131 DNA Polymerase III Structure
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    Chapter 132 Cycling of the Lagging Strand Replicase During Okazaki Fragment Synthesis
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    Chapter 133 Chemical Biology of DNA Replication
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    Chapter 134 Division of Labor
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    Chapter 137 Mechanism of PCNA Loading by RFC
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    Chapter 138 PCNA Structure and Interactions with Partner Proteins
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    Chapter 142 DnaA, DnaB, and DnaC
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    Chapter 144 Control of Initiation in E. coli
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    Chapter 146 Gyrase and Topoisomerase IV as Targets for Antibacterial Drugs
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    Chapter 154 Transposons
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    Chapter 156 Target-Primed Mobilization Mechanisms
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    Chapter 157 Mobile DNA: Mechanisms, Utility, and Consequences
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    Chapter 159 Site-Specific Mutagenesis
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    Chapter 160 Target-Site Selection
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    Chapter 163 Selectivity of Chemicals for DNA Damage
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    Chapter 165 Conservative Site-Specific Recombination
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    Chapter 170 V(D)J Recombination
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    Chapter 173 Regulation of Genetic Element Mobility
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    Chapter 178 Mitochondrial Genomes in Unicellular Relatives of Animals
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    Chapter 182 Mitochondrial Genomes in Land Plants
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    Chapter 183 Expression Assessment
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    Chapter 188 The Mammalian Solute Carrier Families SLC2 and SLC5: Facilitative and Active Transport of Hexoses and Polyols
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    Chapter 189 Golgi Apparatus
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    Chapter 190 Ion Channels and Transporters
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    Chapter 197 Depurination
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    Chapter 206 Exocyclic Adducts
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    Chapter 214 Sequence Selectivity of DNA Damage
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    Chapter 232 Practical Screening for DNA Damage
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    Chapter 233 Direct Enzymatic Reversal of DNA Damage
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    Chapter 249 Modes of DNA Base Pairing
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    Chapter 251 Inflammation and Host Response to Infection
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    Chapter 255 Synthesis of Modified Oligonucleotides
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    Chapter 270 Phagocytosis
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    Chapter 272 Reactive Oxygen Species
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    Chapter 287 The Complement System
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    Chapter 291 Helicase Mechanism of Action
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    Chapter 292 Natural Products that Damage DNA
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    Chapter 295 Analysis of Damaged DNA
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    Chapter 306 DNA Damage by Endogenous Chemicals
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    Chapter 308 Kinetics of DNA Damage
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    Chapter 319 Frequency of DNA Damage
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    Chapter 322 Effects of Adducts on Tm
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    Chapter 331 Resolution of Inflammation
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    Chapter 334 Types of Electrophiles
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    Chapter 354 Bioactivation of Carcinogens
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    Chapter 360 Toll-Like Receptors: Pathogen Recognition and Signaling
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    Chapter 366 Recombination: Mechanisms, Pathways, and Applications
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    Chapter 369 Pattern Recognition Receptors: Evolution, Redundancy, and Cross Talk
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    Chapter 374 TANK-Binding Kinase 1 (TBK1): Structure, Function, and Regulation
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    Chapter 376 Hydrolytic, Deamination, and Rearrangement Reactions of DNA Adducts
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    Chapter 407 Bioinorganic Chemistry
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    Chapter 410 Spectroscopy of Damaged DNA
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    Chapter 432 Base Intercalation in DNA
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    Chapter 441 Oxidative DNA Damage
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    Chapter 442 Ultraviolet Light DNA Damage
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    Chapter 458 SIKE: Discovery, Structure, and Function
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    Chapter 459 In Silico Approaches Towards Safe Targeting of Class I Histone Deacetylases
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    Chapter 465 DNA Repair
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    Chapter 469 Helicase and Primase Interactions with Replisome Components and Accessory Factors
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    Chapter 503 HDAC Inhibitors Entinostat and Suberoylanilide Hydroxamic Acid (SAHA): The Ray of Hope for Cancer Therapy
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    Chapter 560 Mathematics of Fitting Scientific Data
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    Chapter 561 Mathematical Models in the Sciences
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    Chapter 562 Equilibria and Bifurcations in the Molecular Biosciences
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    Chapter 564 Chemical Reaction Kinetics: Mathematical Underpinnings
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    Chapter 565 Plasmid Incompatibility
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    Chapter 566 Conjugative Transfer Systems and Classifying Plasmid Genomes
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    Chapter 567 Rolling Circle Replicating Plasmids
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    Chapter 568 Naming and Annotation of Plasmids
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    Chapter 569 Synthetic Plasmid Biology
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    Chapter 570 Transposable Elements and Plasmid Genomes
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    Chapter 571 Large, Theta-Replicating Plasmids
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    Chapter 572 Mathematical Modeling of Plasmid Dynamics
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    Chapter 573 Modeling Plasmid Regulatory Systems
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    Chapter 574 Genomic Signature Analysis to Predict Plasmid Host Range
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    Chapter 574 Genomic Signature Analysis to Predict Plasmid Host Range
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    Chapter 576 Metamobilomes: The Plasmid Metagenome of Natural Environments
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    Chapter 580 Exploring Nuclear Lamin–Chromatin Interactions and Their Signalling Cascades
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    Chapter 581 Computational Methods in Epigenetic Research
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    Chapter 610 Relevance of DNA Damage to Cancer
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    Chapter 613 Fatty Acid Metabolism
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    Chapter 621 DNA Cross-linking
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    Chapter 646 Chemical Denaturation
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    Chapter 648 Immunology and the Immune Response
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    Chapter 658 DNA Damage as a Therapeutic Strategy
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    Chapter 702 Polyglutamine Folding Diseases
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    Chapter 734 Signal Recognition in Lower Organisms: Light-Induced Control of Cell Movement in the Ciliates Blepharisma and Stentor
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    Chapter 740 Peptide Pheromones and Their Protein Receptors: Cellular Signaling in Gram-Positive Bacteria
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    Chapter 758 RNA-Induced Chromatin Remodeling
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    Chapter 759 Genomic Imprinting
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    Chapter 760 Long-Term Genetic Silencing at Centromere and Telomeres
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    Chapter 761 DNA Methylation and Cancer
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    Chapter 762 Transcription Factor Classes
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    Chapter 763 RNA Quality Control
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    Chapter 764 RNA Interference
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    Chapter 765 mRNA Localization and Localized Translation
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    Chapter 766 uORFs: An Unusual Cis-Element That Regulates Translation
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    Chapter 767 Repeating Sequences in Proteins: Their Identification and Structural/Functional Implications
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    Chapter 772 Toll-Like Receptor 3: Structure and Function
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    Chapter 813 Hereditary Breast and Ovarian Cancer and Poly(ADP-ribose) Polymerase Inhibition
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    Chapter 816 Toll-Like Receptors: Evolution and Structure
Attention for Chapter 366: Recombination: Mechanisms, Pathways, and Applications
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Chapter title
Recombination: Mechanisms, Pathways, and Applications
Chapter number 366
Book title
Molecular Life Sciences
Published by
Springer, New York, NY, January 2017
DOI 10.1007/978-1-4614-6436-5_366-1
Book ISBNs
978-1-4614-6436-5
Authors

Douglas A. Julin, Julin, Douglas A.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 2 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 2 100%

Demographic breakdown

Readers by professional status Count As %
Student > Bachelor 2 100%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 2 100%