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Genome stability and human diseases / Heinz Peter Nasheuer, editor.

Contributor(s): Material type: TextTextSeries: Sub-cellular biochemistry ; v. 50.Publication details: Dordrecht ; New York : Springer, c2010.Description: xiii, 340 p. : ill. (some col.) ; 24 cmISBN:
  • 9789048134700 (hardback : alk. paper)
  • 9048134706 (hardback : alk. paper)
  • 9789048134717 (eISBN)
  • 9048134714 (eISBN)
Subject(s): DDC classification:
  • 572.838 NAS
LOC classification:
  • QH460 .G47 2010
NLM classification:
  • W1
  • QS 677
Contents:
Coming full circle: Cyclin-dependent kinases as anti-cancer drug targets / R.P. Fisher -- Core and linker histone modifications involved in the DNA damage response / J.E. Chubb and S. Rea -- Chromatin assembly and signalling the end of DNA repair requires acetylation of histone H3 on lysine 56 / T. Costelloe and N.F. Lowndes -- Structure and function of histone H2AX / D.M. Pinto and A. Flaus -- The initiation step of eukaryotic DNA replication / H. Pospiech, F. Grosse and F.M. Pisani -- Non-coding RNAs: New players in the field of eukaryotic DNA replication / T. Krude -- Function of TopBP1 in Genome Stability / M. Sokka ... [et al.] -- Eukaryotic single-stranded DNA binding proteins: central factors in genome stability / S. Broderick ... [et al.] -- DNA polymerases and mutagenesis in human cancers / E. Crespan, A. Amoroso and G. Maga -- DNA polymerase [eta], a key protein in translesion synthesis in human cells / S. Cruet-Hennequart ... [et al.] -- The mitochondrial DNA polymerase in health and disease / W.C. Copeland -- Centromeres: assembling and propagating epigenetic function / M. Glynn ... [et al.] -- Nucleotide excision repair in higher eukaryotes: mechanism of primary damage recognition in global genome repair / N.I. Rechkunova and O.I. Lavrik -- Nonhomologous DNA end joining (NHEJ) and chromosomal translocations in humans / M.R. Lieber ... [et al.] -- Fluorescence-based quantification of pathway-specific DNA double-strand break repair activities: a powerful method for the analysis of genome destabilizing mechanisms / M. Bohringer and L. Wiesmuller -- Apoptosis: a way to maintain healthy individuals / C. Mondello and A.I. Scovassi -- The use of transgenic mice in cancer and genome stability research / S. Conmy and H.P. Nasheuer.
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Includes bibliographical references and index.

Coming full circle: Cyclin-dependent kinases as anti-cancer drug targets / R.P. Fisher -- Core and linker histone modifications involved in the DNA damage response / J.E. Chubb and S. Rea -- Chromatin assembly and signalling the end of DNA repair requires acetylation of histone H3 on lysine 56 / T. Costelloe and N.F. Lowndes -- Structure and function of histone H2AX / D.M. Pinto and A. Flaus -- The initiation step of eukaryotic DNA replication / H. Pospiech, F. Grosse and F.M. Pisani -- Non-coding RNAs: New players in the field of eukaryotic DNA replication / T. Krude -- Function of TopBP1 in Genome Stability / M. Sokka ... [et al.] -- Eukaryotic single-stranded DNA binding proteins: central factors in genome stability / S. Broderick ... [et al.] -- DNA polymerases and mutagenesis in human cancers / E. Crespan, A. Amoroso and G. Maga -- DNA polymerase [eta], a key protein in translesion synthesis in human cells / S. Cruet-Hennequart ... [et al.] -- The mitochondrial DNA polymerase in health and disease / W.C. Copeland -- Centromeres: assembling and propagating epigenetic function / M. Glynn ... [et al.] -- Nucleotide excision repair in higher eukaryotes: mechanism of primary damage recognition in global genome repair / N.I. Rechkunova and O.I. Lavrik -- Nonhomologous DNA end joining (NHEJ) and chromosomal translocations in humans / M.R. Lieber ... [et al.] -- Fluorescence-based quantification of pathway-specific DNA double-strand break repair activities: a powerful method for the analysis of genome destabilizing mechanisms / M. Bohringer and L. Wiesmuller -- Apoptosis: a way to maintain healthy individuals / C. Mondello and A.I. Scovassi -- The use of transgenic mice in cancer and genome stability research / S. Conmy and H.P. Nasheuer.

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