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Titlebook: Nuclear, Chromosomal, and Genomic Architecture in Biology and Medicine; Malgorzata Kloc,Jacek Z. Kubiak Book 2022 The Editor(s) (if applic

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Epigenetic-Mediated Regulation of Gene Expression for Biological Control and Cancer: Fidelity of Mecplication and cell division. We will focus on (1) the complex and interdependent processes that are obligatory for control of proliferation and compromised in cancer, (2) epigenetic and topological domains that are associated with distinct phases of the cell cycle that may be altered in cancer initi
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Michael Hausmann,Georg Hildenbrand,Götz Pilarczykional issues in general (and special) relativity have been discussed. Osgood Hill was followed by Luminy in 1988. Then came Johnstown (1991), Berlin (1995), Notre Dame (1999), and ?nally Amsterdam (2002), the proceedings of which are presented in this volume (supplemented with some papers from the p
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Networks and Islands of Genome Nano-architecture and Their Potential Relevance for Radiation Biology In molecular biology, many individual epigenetic pathways of DNA damage response or repair of single and double-strand breaks are described. How these responses are embedded into the response of the system as a whole is often out of the focus of consideration. In this article, we want to follow the
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A Unified Genomic Mechanism of Cell-Fate Changeicroenvironment fluctuations. When oscillation exceeds a given threshold, the CP synchronizes with the GA driving genome expression state transition. The expression synchronization wave invading the entire genome is fostered by the fusion-splitting dynamics of silencing pericentromere-associated het
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Alterations to Genome Organisation in Stem Cells, Their Differentiation and Associated Diseases a cell’s life from stem cell to differentiated cell through to reversible quiescence and irreversible senescence, and hence impacting on genome organisation, altering it to silence specific genes and permit others to be expressed in a controlled way in different cell types and cell cycle statuses.
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How Genomes Emerge, Function, and Evolve: Living Systems Emergence—Genotype-Phenotype-Multilism—Genotes connected by linkers, creating hence the again already known chromosome arms and entire chromosomes forming the cell nucleus. Instantly and for the first time this leads now to a consistent and cross-proven systems statistical mechanics genomics framework elucidating genome intrinsic function an
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