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Molecular Mechanisms for Repair of DNA

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Cover of 'Molecular Mechanisms for Repair of DNA'

Table of Contents

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    Book Overview
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    Chapter 1 Repairable Damage in DNA: Overview
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    Chapter 2 The Nature of the Alkylation Lesion in Mammalian Cells
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    Chapter 3 “Excision” of Bases from DNA Methylated by Carcinogens in Vivo and Its Possible Significance in Mutagenesis and Carcinogenesis
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    Chapter 4 Alkali-Labile Lesions in DNA from Cells Treated with Methylating Agents, 4-Nitroquinoline-N-oxide, or Ultraviolet Light
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    Chapter 5 Apurinic and Apyrimidinic Sites in DNA
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    Chapter 6 Maintenance of DNA and Repair of Apurinic Sites
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    Chapter 7 DNA Turnover and Strand Breaks in Escherichia coli
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    Chapter 8 Excision-Repair of γ-Ray-Damaged Thymine in Bacterial and Mammalian Systems
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    Chapter 9 Formation of Dimers in Ultraviolet-Irradiated DNA
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    Chapter 10 An Enzymatic Assay for Pyrimidine Dimers in DNA
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    Chapter 11 Enzymatic Photoreactivation: Overview
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    Chapter 12 Kinetics of Photoreactivation
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    Chapter 13 Purifying the Escherichia coli Photoreactivating Enzyme
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    Chapter 14 The Human Leukocyte Photoreactivating Enzyme
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    Chapter 15 Photorepair of RNA
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    Chapter 16 Dark Repair in Bacteriophage Systems: Overview
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    Chapter 17 Enzymic Mechanism of Excision-Repair in T4-Infected Cells
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    Chapter 18 The Repair of Ultraviolet Damage by Phage T4: The Role of the Early Phage Genes
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    Chapter 19 Repair of Heteroduplex DNA in Bacteriophage T4
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    Chapter 20 Recovery of Phage λ from Ultraviolet Damage
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    Chapter 21 Enzymology of Excision-Repair in Bacteria: Overview
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    Chapter 22 The Escherichia coli UV Endonuclease (Correndonuclease II)
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    Chapter 23 Endonuclease II of Escherichia coli
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    Chapter 24 Endonuclease III: An Endonuclease from Escherichia coli That Introduces Single Polynucleotide Chain Scissions in Ultraviolet-Irradiated DNA
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    Chapter 25 An Escherichia coli Endonuclease Which Acts on X-Irradiated DNA
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    Chapter 26 Substrate Specificity of Micrococcus luteus UV Endonuclease and Its Overlap with DNA Photolyase Activity
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    Chapter 27 Two Temperature-Sensitive polA Mutants: An Approach to the Role in Vivo of DNA Polymerase I
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    Chapter 28 The Role of DNA Polymerase I in Excision-Repair
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    Chapter 29 Involvement of Escherichia coli DNA Polymerase-I-Associated 5′→3′ Exonuclease in Excision-Repair of UV-Damaged DNA
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    Chapter 30 Exonuclease VII of Escherichia coli
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    Chapter 31 Enzymatic Repair of UV-Irradiated DNA in Vitro
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    Chapter 32 Repair Replication in Permeabilized Escherichia Coli
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    Chapter 33 Requirement for uvrAB Function for Postirradiation DNA Synthesis in Vitro
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    Chapter 34 DNA Polymerase II-Dependent DNA Synthesis in Toluenized Bacillus subtilis Cells
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    Chapter 35 Repair by Genetic Recombination in Bacteria: Overview
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    Chapter 36 Genetic Exchanges Induced by Structural Damage in Nonreplicating Phage λ DNA
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    Chapter 37 The Beginning of an Investigation of the Role of recF in the Pathways of Metabolism of Ultraviolet-Irradiated DNA in Escherichia coli
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    Chapter 38 The Degradation of Duplex DNA by the recBC DNase of Escherichia coli
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    Chapter 39 Analysis of Temperature-Sensitive recB and recC Mutations
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    Chapter 40 Recombination and Postreplication Repair
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    Chapter 41 Ultraviolet-Light-Induced Incorporation of Bromodeoxyuridine into Parental DNA of an Excision-Defective Mutant of Escherichia coli
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    Chapter 42 Distribution of Pyrimidine Dimers During Postreplication Repair in UV-Irradiated Excision-Deficient Cells of Escherichia coli K12
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    Chapter 43 Experiments on the Filling of Daughter-Strand Gaps During Postreplication Repair
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    Chapter 44 Postreplication Repair Gap Filling in an Escherichia coli Strain Deficient in dnaB Gene Product
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    Chapter 45 Involvement of uvrD, exrA, and recB Genes in the Control of the Postreplicational Repair Process
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    Chapter 46 Replication and Expression of Constructed Plasmid Chimeras in Transformed Escherichia coli—A Review
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    Chapter 47 Relationships Among Repair, Mutagenesis, and Survival: Overview
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    Chapter 48 SOS repair hypothesis: phenomenology of an inducible DNA repair which is accompanied by mutagenesis.
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    Chapter 49 Thermal Enhancement of Ultraviolet Mutability in a dnaB uvrA Derivative of Escherichia coli B/r: Evidence for Inducible Error-Prone Repair
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    Chapter 50 lexB: A New Gene Governing Radiation Sensitivity and Lysogenic Induction in Escherichia coli K12
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    Chapter 51 Indirect Suppression of Radiation Sensitivity of a recA − Strain of Escherichia coli K12
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    Chapter 52 The Two-Lesion Hypothesis for UV-Induced Mutation in Relation to Recovery of Capacity for DNA Replication
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    Chapter 53 The Effect of Genes Controlling Radiation Sensitivity on Chemical Mutagenesis in Yeast
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    Chapter 54 Influence of Repair on the Specificity of Ultraviolet-Induced Reversion of an Ochre Allele of the Structural Gene for Iso-1- cytochrome c
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    Chapter 55 The Role of DNA Polymerase I in Genetic Recombination and Viability of Escherichia coli
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    Chapter 56 The Role of the rec Genes in the Viability of Escherichia coli K12
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Title
Molecular Mechanisms for Repair of DNA
Published by
Springer US, January 1975
DOI 10.1007/978-1-4684-2895-7
ISBNs
978-1-4684-2897-1, 978-1-4684-2895-7
Editors

Philip C. Hanawalt, Richard B. Setlow

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 3 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 3 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 2 67%
Unknown 1 33%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 2 67%
Unknown 1 33%