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Titlebook: SUMO Regulation of Cellular Processes; Van G. Wilson Book 2017Latest edition Springer International Publishing AG 2017 DNA.Translation.cel

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Lyndee L. Scurr,Sebastian Haferkamp,Helen Rizose theirinfants with its many benefits (nutritional, immunologic, cognitive), but to also risk transmitting HIV. These challenges have prompted an intensive search for new prophylactic and therapeutic strategies978-1-4939-5278-6978-1-4614-2251-8Series ISSN 0065-2598 Series E-ISSN 2214-8019
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Nabil Elroubye theirinfants with its many benefits (nutritional, immunologic, cognitive), but to also risk transmitting HIV. These challenges have prompted an intensive search for new prophylactic and therapeutic strategies978-1-4939-5278-6978-1-4614-2251-8Series ISSN 0065-2598 Series E-ISSN 2214-8019
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Joseph Cao,Albert J. Coureye theirinfants with its many benefits (nutritional, immunologic, cognitive), but to also risk transmitting HIV. These challenges have prompted an intensive search for new prophylactic and therapeutic strategies978-1-4939-5278-6978-1-4614-2251-8Series ISSN 0065-2598 Series E-ISSN 2214-8019
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SUMO and Chromatin Remodelingnce suggesting that sumoylation is primarily repressive for access to chromatin, recent analyses suggest that protein sumoylation on the chromatin template may play important roles at highly expressed genes. Elucidating the dynamic interplay of sumoylation with other post-translational modifications
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Functions of SUMO in the Maintenance of Genome Stabilityjor pathways of DNA repair and genome maintenance influenced by the SUMO system and discuss selected examples of SUMO’s actions in these pathways where the biological consequences of the modification have been elucidated.
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The Molecular Interface Between the SUMO and Ubiquitin Systemsquitin systems in mediating DNA damage repair and the genesis and the resolution of inflammatory-related diseases such as cancer. New insights regarding the interdependence of these two important post-translational modifications with nuclear receptor superfamily members will also be highlighted.
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SUMO and Nucleocytoplasmic Transporthereby affecting the sumoylation state of target proteins. These inter-relationships between SUMO and the nucleocytoplasmic transport machinery, and the varied ways in which they occur, are discussed.
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Sumoylation in Development and Differentiationregulatory cascades. For example, inhibition of the sumoylation system during embryogenesis causes lethality and/or severe abnormalities from invertebrates to mammals. Mechanistically, it is now known that many of the TFs and components of chromatin remodeling complexes that are critical for develop
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