Base excision repair

Author(s)

Bibliographic Information

Base excision repair

edited by Kivie Moldave, gest eds. Sankar Mitra...[et al.]

(Progress in nucleic acid research and molecular biology / edited by Waldo E. Cohn, Kivie Moldave, v. 68)

Academic Press, 2001

Available at  / 5 libraries

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Note

Includes bibliographical references and index

Description and Table of Contents

Description

This volume of Progress in Nucleic Acid Research and Molecular Biology represents research discussed during the DNA Base Excision Repair Workshop. This compilation of articles focuses on several recent observations highlighting the complexity of the base excision repair (BER) process in DNA repair. Focusing on the various facets of BER research, this book is a timely and highly beneficial reference for investigators in the DNA repair field. It will also aid scientists not directly involved in repair studies to obtain a comprehensive understanding of the current state of knowledge in the field.Progress in Nucleic Acid Research and Molecular Biology provides a forum for discussion of new discoveries, approaches, and ideas in molecular biology. It contains contributions from leaders in their fields and abundant references.

Table of Contents

Preface. Keynote Address: Past, Present, and Future Aspects of Base Excision Repair. Multiple Pathways for DNA Base Excision Repair: Foreward. The Switch Mechanism among Multiple BER Pathways. Yeast Base Excision Repair: Interconnections and Networks. BER, MGMT, and MMR in Defense Against Alkylation-Induced Genotoxicity and Apoptosis. Gene Targeting in the Mouse for Elucidating the Role of BER: Foreward. Mammalian DNA b-Polymerase in Base Excision Repair of Alkylation Damage. Regulation of Intracellular Localization of Human MTH1, OGG1 and MYH Proteins for Repair of Oxidative DNA Damage. Repair of 8-Oxoguanine and OGG1-Incised Apurinic Sites In a CHO Cell Line. Mammalian OGG1/MMH Gene Plays a Major Role for Repair of the 8-hydroxyguanine Lesion in DNA. Complexities of BER: Foreward. Molecular Mechanism of PCNA-Dependent Base Excision Repair. Factors Influencing the Removal of Thymine Glycol from DNA in y-Irradiated Human Cells. Completion of Base Excision Repair by Mammalian DNA Ligases. Uracil-Initiated Base Excision DNA Repair Synthesis Fidelity In Human Colon Adenocarcinoma LoVo and Escherichia coli Cell Extracts. DNA Glycosylases: Specificity and Mechanisms: Foreward. Multiple DNA Glycosylases for Repair of 8-Oxoguanine and Their Potential In Vivo Functions. DNA Substrates Containing Defined Oxidative Base Lesions and Their Application to Study Substrate Specificities of Base Excision Repair Enzymes. Mechanism of Action of E. coli Formamidopyrimidine N-Glycosylase: Role of K155 in Substrate Binding and Product Release. Thymine DNA Glycosylase. Mitochondrial BER: Foreward. Crystallizing Thoughts about DNA Base Excision Repair. DNA Damage Recognition, and Repair Pathway Coordination Revealed by the Structural Biochemistry of DNA Repair Enzymes. Potential Double Flipping Mechanism by E. coli MutY. Properties and Functions of Human Uracil-DNA Glycosylase From the UNG Gene. Index.

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Related Books: 1-1 of 1

  • Progress in nucleic acid research and molecular biology

    edited by Waldo E. Cohn, Kivie Moldave

    Academic Press 1975-

    v. 31 , v. 32 , v. 33 , v. 34 , v. 35 , v. 36 , v. 37 , v. 38 , v. 39 , v. 40 , v. 41 , v. 42 , v. 43 , v. 44 , v. 45 , v. 46 , v. 47 , v. 48 , v. 49 , v. 50 , v. 51 , v. 52 , v. 53 , v. 54 , v. 55 , v. 56 , v. 57 , v. 58 , v. 59 , v. 60 , v. 61 , v. 62 , v. 63 , v. 64 , v. 65 , v. 66 , v. 67 , v. 68 , v. 69 , v. 70 , v. 71 , v. 72 , v. 73 , v. 74 , v. 75 , v. 76 , v. 77 , v. 78 , v. 79 , v. 80 , v. 81 , v. 82

    Available at 73 libraries

Details

  • NCID
    BA53584424
  • ISBN
    • 0125400683
  • Country Code
    us
  • Title Language Code
    eng
  • Text Language Code
    eng
  • Place of Publication
    san Diego ; Tokyo
  • Pages/Volumes
    xxx, 403 p.
  • Size
    24 cm
  • Parent Bibliography ID
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