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Titlebook: Chromatin and Disease; Tapas K. Kundu,R. Bittman,P. Zwickl Book 2007 Springer Science+Business Media B.V. 2007 Chromatin Structure, Dynami

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发表于 2025-3-21 17:45:00 | 显示全部楼层 |阅读模式
书目名称Chromatin and Disease
编辑Tapas K. Kundu,R. Bittman,P. Zwickl
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概述Includes a collection of articles with the broad theme of disease connection to chromatin structure and function.Elaborates on the molecular pharmacology of the drugs targeting chromatin structure and
丛书名称Subcellular Biochemistry
图书封面Titlebook: Chromatin and Disease;  Tapas K. Kundu,R. Bittman,P. Zwickl Book 2007 Springer Science+Business Media B.V. 2007 Chromatin Structure, Dynami
描述It is more evident now than ever before that dynamic organization of human genome into nucleoprotein structure, chromatin confers the unique regulatory mechanisms for most of the cellular phenomena, which include replication, transcription, DNA repair, recombination and also apoptosis. The dynamic nature of the chromatin is regulated by chromatin modifications (epigenetic alterations), remodeling, histone chaperones and functional interactions of different chromatin interacting n- histone proteins. Dysfunction of this highly inter connected machineries disturb the cellular homoeostasis, and thereby causes several diseases. As we advance in our knowledge of chromatin function and also disease mechanisms in more details, their causal relationship is becoming more evident. This has lead to the identification of chromatin function as target for new generation therapeutics. In the light of these advances, it happens to be the right time to explore current insights into various aspect of chromatin and disease connection under one cover. Authors who are actively involved in chromatin research and have made several original contributions to develop latest paradigms in the field have writte
出版日期Book 2007
关键词Chromatin Structure, Dynamics & Transcription; DNA; Epignetic Regulation; Histone Chaperone; Histone Mod
版次1
doihttps://doi.org/10.1007/1-4020-5466-1
isbn_softcover978-90-481-7374-7
isbn_ebook978-1-4020-5466-2Series ISSN 0306-0225 Series E-ISSN 2542-8810
issn_series 0306-0225
copyrightSpringer Science+Business Media B.V. 2007
The information of publication is updating

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Histone Variant Nucleosomes All the conventional histones, except H4, have histone variants. Together with histone modifications and chromatin remodeling machines, the incorporation of histone variants into the nucleosome is one of the main strategies that the cell uses to regulate transcription, repair, chromosome assembly a
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Histone Chaperones in Chromatin Dynamicsvolved in the histone storage, histone translocation to the nucleus, and histone exchange and histone deposition onto the DNA for replication dependent chromatin assembly. Interestingly, they have also been demonstrated to possess the histone removal activity. While the involvement of the histone ch
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Functions Of The Histone Chaperone Nucleolin In Diseasesby the silver staining methods (AgNOR) has been proved to be an important tool for predicting the clinical outcome of some cancer diseases. Two major argyrophilic proteins responsible for the strong staining of cells in interphase are the nucleophosmin (B23) and the nucleolin (C23) nucleolar protein
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Chromatin as a Target for the DNA-Binding Anticancer Drugss are the molecular targets of the anticancer drugs. Small DNA binding ligands, which inhibit enzymatic processes with DNA substrate, are well known in cancer chemotherapy. These drugs inhibit the polymerase and topoisomerase activity. With the advent in the knowledge of chromatin chemistry and biol
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Reversible Acetylation Of Non Histone Proteinsation. Among the different posttranslational modifications, reversible acetylation of non-histone proteins has profound functional implications on wide range of cellular processes. The acetylation status of these proteins is regulated by several cellular and non-cellular factors like viruses, physio
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Aberrant Forms of Histone Acetyltransferases in Human Diseaseterns. This complex and tightly regulated process is largely regulated at the level of RNA polymerase II-mediated transcription. Within this process an important class of transcriptional regulators are the histone acetyltransferases (HATs), proteins that acetylate histones and non-histone substrates
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Chromatin Acetylation Status in the Manifestation of Neurodegenerative Diseasesect choice being crucial for the maturation of a functional brain and to face pathological conditions. At the transcriptional level, chromatin remodeling enzymes participates in such processes. In this paper, we will see that disruption of the Histone acetyl transferase (HAT)/Deacetylase (HDAC) bala
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