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Chromatin Regulation and Dynamics

Chromatin Regulation and Dynamics
Author: Anita Göndör
Publisher: Academic Press
Total Pages: 496
Release: 2016-10-25
Genre: Science
ISBN: 0128034025

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Chromatin Regulation and Dynamics integrates knowledge on the dynamic regulation of primary chromatin fiber with the 3D nuclear architecture, then connects related processes to circadian regulation of cellular metabolic states, representing a paradigm of adaptation to environmental changes. The final chapters discuss the many ways chromatin dynamics can synergize to fundamentally contribute to the development of complex diseases. Chromatin dynamics, which is strategically positioned at the gene-environment interface, is at the core of disease development. As such, Chromatin Regulation and Dynamics, part of the Translational Epigenetics series, facilitates the flow of information between research areas such as chromatin regulation, developmental biology, and epidemiology by focusing on recent findings of the fast-moving field of chromatin regulation. Presents and discusses novel principles of chromatin regulation and dynamics with a cross-disciplinary perspective Promotes crosstalk between basic sciences and their applications in medicine Provides a framework for future studies on complex diseases by integrating various aspects of chromatin biology with cellular metabolic states, with an emphasis on the dynamic nature of chromatin and stochastic principles Integrates knowledge on the dynamic regulation of primary chromatin fiber with 3D nuclear architecture, then connects related processes to circadian regulation of cellular metabolic states, representing a paradigm of adaptation to environmental changes


Chromatin

Chromatin
Author: Ralf Blossey
Publisher: CRC Press
Total Pages: 172
Release: 2017-08-04
Genre: Computers
ISBN: 149872938X

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An invaluable resource for computational biologists and researchers from other fields seeking an introduction to the topic, Chromatin: Structure, Dynamics, Regulation offers comprehensive coverage of this dynamic interdisciplinary field, from the basics to the latest research. Computational methods from statistical physics and bioinformatics are detailed whenever possible without lengthy recourse to specialized techniques.


Introduction to Epigenetics

Introduction to Epigenetics
Author: Renato Paro
Publisher: Springer Nature
Total Pages: 215
Release: 2021-03-23
Genre: Science
ISBN: 3030686701

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This open access textbook leads the reader from basic concepts of chromatin structure and function and RNA mechanisms to the understanding of epigenetics, imprinting, regeneration and reprogramming. The textbook treats epigenetic phenomena in animals, as well as plants. Written by four internationally known experts and senior lecturers in this field, it provides a valuable tool for Master- and PhD- students who need to comprehend the principles of epigenetics, or wish to gain a deeper knowledge in this field. After reading this book, the student will: Have an understanding of the basic toolbox of epigenetic regulation Know how genetic and epigenetic information layers are interconnected Be able to explain complex epigenetic phenomena by understanding the structures and principles of the underlying molecular mechanisms Understand how misregulated epigenetic mechanisms can lead to disease


Chromatin

Chromatin
Author: Ralf Blossey
Publisher: CRC Press
Total Pages: 182
Release: 2017-08-04
Genre: Computers
ISBN: 1351646818

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An invaluable resource for computational biologists and researchers from other fields seeking an introduction to the topic, Chromatin: Structure, Dynamics, Regulation offers comprehensive coverage of this dynamic interdisciplinary field, from the basics to the latest research. Computational methods from statistical physics and bioinformatics are detailed whenever possible without lengthy recourse to specialized techniques.


Chromatin Structure and Dynamics

Chromatin Structure and Dynamics
Author: J. Zlatanova
Publisher: Gulf Professional Publishing
Total Pages: 546
Release: 2004
Genre: Medical
ISBN: 9780444515940

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Biological processes that replicate, preserve and use the genetic information encoded in DNA must operate in the context of chromatin, a highly organized complex of DNA and proteins. These proteins do not merely package the DNA in the tiny volume of the nucleus, but impart the structure the ability to change according to the requirements of the specific process the DNA is involved in. Moreover, chromatin structure is used by the cell to control the activity of DNA. In this volume the basics of chromatin structure and dynamics are presented by established experts in the field.


The Regulation of Chromatin Dynamics by Histone Chaperones and Variants

The Regulation of Chromatin Dynamics by Histone Chaperones and Variants
Author: Rachel Miriam Zunder
Publisher:
Total Pages: 258
Release: 2011
Genre:
ISBN:

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In all eukaryotic organisms, DNA is packaged into chromatin, which controls gene expression and genomic stability. The chromatin landscape is dynamic and responds to environmental signals to direct different cellular programs. Chromatin architecture is regulated by a network of structural and enzymatic proteins that interact with histones to alter nucleosome composition. In my dissertation, I examined 1) the interaction between histone chaperones and newly synthesized histones during nucleosome assembly and 2) the interplay between canonical histone isotypes, histone variants, and histone modifications. My work established how the unusual domain architecture of a newly discovered histone chaperone, Rtt106, provides specificity for acetylated histone cargo. Additionally, I discovered several new histone modifications and examined the relationship between the histone variant H2A.Z and two canonical histone H2B isotypes (Htb1 and Htb2). My dissertation establishes a framework for understanding the additional levels of genomic regulation achieved by histone chaperones, variants, isotypes, and modifications. In chapter 2, I examine the structural basis for the specificity of the histone chaperone Rtt106 for H3 molecules modified by an acetylation at lysine 56 (H3K56ac). The X ray crystal structure, determined by our collaborators Andy Antczak and James Berger, revealed that Rtt106 contains a double pleckstrin homology (PH) motif. A targeted mutational screen identified two regions on Rtt106 that, when mutated individually, each disrupted Rtt106-H3 binding. One region was a basic surface on the N-terminal PH domain and the other was a loop within the C-terminal PH domain. Although binding experiments did not directly identify an H3K56ac binding pocket on Rtt106, a comparative analysis with the chromatin remodeling protein Pob3 implicated the C-terminal loop as the source of H3K56ac-specificity in the Rtt106-H3 interaction. This work establishes new domain architecture for acetyl-lysine recognition and expands our understanding of how chaperone-histone binding is regulated. Armed with Rtt106 mutants that reduced H3 binding activity, in chapter 3 I examine the role of Rtt106-mediated nucleosome assembly during replication, transcription, and silencing. Although Rtt106 mutant proteins localized to origins of replication and silent chromatin, without the ability to bind H3, these mutants could not deliver H3K56ac into chromatin. Reduced H3K56ac occupancy was detrimental to replication whereas excess unincorporated H3K56ac was antagonistic to silencing. In contrast, H3K56ac binding was required to recruit Rtt106 to histone gene promoters. Without recruitment of Rtt106 to these loci, we observed defects in H3K56ac incorporation and histone gene repression. Our work demonstrates that Rtt106-H3 binding is necessary for all known branches Rtt106-mediated nucleosome assembly, however these different branches rely on distinct genomic localization cues to target Rtt106 to chromatin. To analyze the relationships between canonical histones, modifications, and variants, in chapter 4 I explore the unique functions of two histone H2B isotypes, Htb1 and Htb2. In collaboration with the Freitas lab at the Ohio State University, we discovered three new modifications on H2B, one of which was isotype-specific. Although the dimeric association of H2A.Z with H2B did not reveal an isotype-specific interaction, the interplay between canonical histone isotypes and variants remains an intriguing paradigm for chromatin regulation. In collaboration with the Giaever lab at the University of Toronto, we used chemical genomic profiling to define unique functions associated with the Htb1 and Htb2 isotypes. However, all chemical sensitivities identified resulted from changes in histone expression rather than Htb1 and Htb2 protein activity. Although we are still searching for a functional distinction between the two H2B isotypes, mass spectrometry analyses coupled with chemical-genomic profiling represents a promising strategy for discovering these relationships and defining their functional impact.


Chromatin Regulation in Cell Fate Decisions

Chromatin Regulation in Cell Fate Decisions
Author: José Luis Sardina
Publisher: Frontiers Media SA
Total Pages: 171
Release: 2021-10-20
Genre: Science
ISBN: 2889715108

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Plant Chromatin Dynamics

Plant Chromatin Dynamics
Author: Célia Baroux
Publisher:
Total Pages: 659
Release: 2018
Genre: Botany
ISBN: 9781493973187

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