Person: Alt, Frederick
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Publication Localized DNA Demethylation at Recombination Intermediates during Immunoglobulin Heavy Chain Gene Assembly
(Public Library of Science, 2013) Selimyan, Roza; Gerstein, Rachel M.; Ivanova, Irina; Precht, Patricia; Subrahmanyam, Ramesh; Perlot, Thomas; Alt, Frederick; Sen, RanjanMultiple epigenetic marks have been proposed to contribute to the regulation of antigen receptor gene assembly via V(D)J recombination. Here we provide a comprehensive view of DNA methylation at the immunoglobulin heavy chain (IgH) gene locus prior to and during V(D)J recombination. DNA methylation did not correlate with the histone modification state on unrearranged alleles, indicating that these epigenetic marks were regulated independently. Instead, pockets of tissue-specific demethylation were restricted to DNase I hypersensitive sites within this locus. Though unrearranged diversity (DH) and joining (JH) gene segments were methylated, DJH junctions created after the first recombination step were largely demethylated in pro-, pre-, and mature B cells. Junctional demethylation was highly localized, B-lineage-specific, and required an intact tissue-specific enhancer, Eμ. We propose that demethylation occurs after the first recombination step and may mark the junction for secondary recombination.
Publication Essential Developmental, Genomic Stability, and Tumour Suppressor Functions of the Mouse Orthologue of hSSB1/NABP2
(Public Library of Science, 2013) Shi, Wei; Bain, Amanda L.; Schwer, Bjoern; Al-Ejeh, Fares; Smith, Corey; Wong, Lee; Chai, Hua; Miranda, Mariska S.; Ho, Uda; Kawaguchi, Makoto; Miura, Yutaka; Finnie, John W.; Wall, Meaghan; Heierhorst, Jörg; Wicking, Carol; Spring, Kevin J.; Alt, Frederick; Khanna, Kum KumSingle-stranded DNA binding proteins (SSBs) regulate multiple DNA transactions, including replication, transcription, and repair. We recently identified SSB1 as a novel protein critical for the initiation of ATM signaling and DNA double-strand break repair by homologous recombination. Here we report that germline Ssb1(^{−/−}) embryos die at birth from respiratory failure due to severe rib cage malformation and impaired alveolar development, coupled with additional skeletal defects. Unexpectedly, Ssb1(^{−/−}) fibroblasts did not exhibit defects in Atm signaling or γ-H2ax focus kinetics in response to ionizing radiation (IR), and B-cell specific deletion of Ssb1 did not affect class-switch recombination in vitro. However, conditional deletion of Ssb1 in adult mice led to increased cancer susceptibility with broad tumour spectrum, impaired male fertility with testicular degeneration, and increased radiosensitivity and IR–induced chromosome breaks in vivo. Collectively, these results demonstrate essential roles of Ssb1 in embryogenesis, spermatogenesis, and genome stability in vivo.