Daryl S. Henderson and a team of hands-on experts give time-tested instructions for analyzing a wide range of DNA repair processes and cellular responses to DNA damage, including nucleotide and base excision repair, DNA strand break repair, and mismatch repair. The methods focus on eukaryotic model systems that have made, or have the potential to make, important contributions to our understanding of cellular responses to DNA damage in relation to mutagenesis, carcinogenesis, and the cell cycle. Although mammalian cells predominate, consideration is also given to such important nonmammalian model systems as yeast, C. elegans (nematode), Drosophila (fruitfly), Xenopus (amphibian), and plants. DNA Repair Protocols: Eukaryotic Systems offers the most comprehensive collection of DNA repair protocols available, all step-by-step, optimized, and eminently reproducible with tips. It will serve as the gold-standard reference for both the practical and theoretical aspects of DNA repair studies, encourage the transfer of methodologies between model systems, and stimulate the development of new approaches.
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In DNA Repair Protocols: Eukaryotic Systems, Daryl S. Henderson and a team of hands-on experts give time-tested instructions for analyzing a wide range of DNA repair processes and cellular responses to DNA damage, including nucleotide and base excision repair, DNA strand break repair, and mismatch repair. The methods focus on eukaryotic model systems that have made, or have the potential to make, important contributions to our understanding of cellular responses to DNA damage in relation to mutagenesis, carcinogenesis, and the cell cycle. Although mammalian cells predominate, consideration is also given to such important nonmammalian model systems as yeast, C. elegans (nematode), Drosophila (fruitfly), Xenopus (amphibian), and plants.
DNA Repair Protocols: Eukaryotic Systems offers the most comprehensive collection of DNA repair protocols available, all step-by-step, optimized, and eminently reproducible with tips on troubleshooting and avoiding pitfalls. It will serve as the gold-standard reference for both the practical and theoretical aspects of DNA repair studies, encourage the transfer of methodologies between model systems, and stimulate the development of new approaches.
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Condizione: New. This text offers a collection of DNA repair protocols, all step-by-step, optimized, and reproducible with tips. It aims to serve as a reference for practical and theoretical aspects of DNA repair studies, encourage the transfer of methodologies between model systems, and stimulate new approaches. Editor(s): Henderson, Daryl S. Series: Methods in Molecular Biology. Num Pages: 642 pages, biography. BIC Classification: PSAK1; PSD. Category: (P) Professional & Vocational; (UP) Postgraduate, Research & Scholarly; (UU) Undergraduate. Dimension: 235 x 155 x 36. Weight in Grams: 1111. . 1999. annotated ed. Hardback. . . . . Codice articolo V9780896038028
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Gebunden. Condizione: New. The field of eukaryotic DNA repair is enjoying a period of remarkable growth and discovery, fueled by technological advances in molecular bi- ogy, protein biochemistry, and genetics. Notable achievements include the molecular cloning of multiple genes assoc. Codice articolo 458446426
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Condizione: New. This text offers a collection of DNA repair protocols, all step-by-step, optimized, and reproducible with tips. It aims to serve as a reference for practical and theoretical aspects of DNA repair studies, encourage the transfer of methodologies between model systems, and stimulate new approaches. Editor(s): Henderson, Daryl S. Series: Methods in Molecular Biology. Num Pages: 642 pages, biography. BIC Classification: PSAK1; PSD. Category: (P) Professional & Vocational; (UP) Postgraduate, Research & Scholarly; (UU) Undergraduate. Dimension: 235 x 155 x 36. Weight in Grams: 1111. . 1999. annotated ed. Hardback. . . . . Books ship from the US and Ireland. Codice articolo V9780896038028
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