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Higher-order structure of chromatin and chromosomes
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scholarly article
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Europe PubMed Central
PubMed ID
11250134
retrieved
31 July 2017
review article
1 reference
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Europe PubMed Central
title
Higher-order structure of chromatin and chromosomes
(English)
1 reference
stated in
Europe PubMed Central
PubMed ID
11250134
retrieved
31 July 2017
author name string
Woodcock CL
series ordinal
1
1 reference
stated in
Europe PubMed Central
PubMed ID
11250134
retrieved
31 July 2017
Dimitrov S
series ordinal
2
1 reference
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Europe PubMed Central
PubMed ID
11250134
retrieved
31 July 2017
language of work or name
English
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publication date
1 April 2001
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Europe PubMed Central
PubMed ID
11250134
retrieved
31 July 2017
published in
Current Opinion in Genetics & Development
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stated in
Europe PubMed Central
PubMed ID
11250134
retrieved
31 July 2017
volume
11
1 reference
stated in
Europe PubMed Central
PubMed ID
11250134
retrieved
31 July 2017
page(s)
130-135
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stated in
Europe PubMed Central
PubMed ID
11250134
retrieved
31 July 2017
issue
2
1 reference
stated in
Europe PubMed Central
PubMed ID
11250134
retrieved
31 July 2017
cites work
Review: chromatin structural features and targets that regulate transcription
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Aging, chromatin, and food restriction--connecting the dots
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Signaling to chromatin through histone modifications
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Phosphorylation of linker histone H1 regulates gene expression in vivo by creating a charge patch
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Histone acetylation in chromatin structure and transcription
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ATP-dependent remodeling and acetylation as regulators of chromatin fluidity
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Histone acetylation and chromatin assembly: a single escort, multiple dances?
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Large-scale chromatin structure and function.
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7 January 2021
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Long-distance chromatin mechanisms controlling tissue-specific gene locus activation.
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Chromo-domain proteins: linking chromatin structure to epigenetic regulation.
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7 January 2021
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Locus control regions and epigenetic chromatin modifiers
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7 January 2021
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Histone H1 and chromatin higher-order structure
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7 January 2021
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Structure, dynamics, and function of chromatin in vitro.
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Chromatin organization re-viewed
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7 January 2021
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Chromatin higher order structure: chasing a mirage?
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Chromatin fiber structure: morphology, molecular determinants, structural transitions.
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Histone H1: location and role
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Chromatin conformation in living cells: support for a zig-zag model of the 30 nm chromatin fiber
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Pulling a single chromatin fiber reveals the forces that maintain its higher-order structure
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Pulling chromatin fibers: computer simulations of direct physical micromanipulations
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7 January 2021
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Nucleosomes, linker DNA, and linker histone form a unique structural motif that directs the higher-order folding and compaction of chromatin
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reference URL
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DNA folding: structural and mechanical properties of the two-angle model for chromatin
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A chromatin folding model that incorporates linker variability generates fibers resembling the native structures
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Crystal structure of the nucleosome core particle at 2.8 A resolution
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DNase I digestion reveals alternating asymmetrical protection of the nucleosome by the higher order chromatin structure
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Physical Constraints in the Condensation of Eukaryotic Chromosomes. Local Concentration of DNA versus Linear Packing Ratio in Higher Order Chromatin Structures†
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Nucleosome positioning and gene regulation.
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Transcription factors vs nucleosomes: regulation of the PHO5 promoter in yeast
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Transcriptional regulation of mammalian genes in vivo. A tale of two templates
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Molecular Machines: putting the pieces together
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Persistence of an alternate chromatin structure at silenced loci in vitro
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https://api.crossref.org/works/10.1016%2FS0959-437X%2800%2900169-6
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The organized chromatin domain of the repressed yeast a cell-specific gene STE6 contains two molecules of the corepressor Tup1p per nucleosome
1 reference
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The structure of the tetratricopeptide repeats of protein phosphatase 5: implications for TPR-mediated protein-protein interactions
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Characterization of the N-terminal Domain of the Yeast Transcriptional Repressor Tup1
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Structure of the C-terminal domain of Tup1, a corepressor of transcription in yeast
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Structure and dynamic properties of a glucocorticoid receptor-induced chromatin transition
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7 January 2021
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Chromosome cohesion, condensation, and separation
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7 January 2021
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Condensins, chromosome condensation protein complexes containing XCAP-C, XCAP-E and a Xenopus homolog of the Drosophila Barren protein
1 reference
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A heterodimeric coiled-coil protein required for mitotic chromosome condensation in vitro
1 reference
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Fission yeast condensin complex: essential roles of non-SMC subunits for condensation and Cdc2 phosphorylation of Cut3/SMC4.
1 reference
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Crossref
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https://api.crossref.org/works/10.1016%2FS0959-437X%2800%2900169-6
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7 January 2021
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pEg7, a new Xenopus protein required for mitotic chromosome condensation in egg extracts
1 reference
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7 January 2021
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ATP-dependent positive supercoiling of DNA by 13S condensin: a biochemical implication for chromosome condensation
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13S condensin actively reconfigures DNA by introducing global positive writhe: implications for chromosome condensation
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Crossref
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Reversible histone modification and the chromosome cell cycle
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7 January 2021
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Nuclear assembly is independent of linker histones.
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7 January 2021
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Chromosome condensation in Xenopus mitotic extracts without histone H1.
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Linker histone H1 regulates specific gene expression but not global transcription in vivo
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Core histone N-termini play an essential role in mitotic chromosome condensation
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Chromosome condensation induced by fostriecin does not require p34cdc2 kinase activity and histone H1 hyperphosphorylation, but is associated with enhanced histone H2A and H3 phosphorylation.
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Phosphorylation of histone H3 is required for proper chromosome condensation and segregation
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7 January 2021
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Identification of a novel phosphorylation site on histone H3 coupled with mitotic chromosome condensation
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Mitotic histone H3 phosphorylation by the NIMA kinase in Aspergillus nidulans
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Mitotic phosphorylation of histone H3 is governed by Ipl1/aurora kinase and Glc7/PP1 phosphatase in budding yeast and nematodes
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Elasticity and structure of eukaryote chromosomes studied by micromanipulation and micropipette aspiration.
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Reversible and irreversible unfolding of mitotic newt chromosomes by applied force
1 reference
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Elasticity measurements show the existence of thin rigid cores inside mitotic chromosomes.
1 reference
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D-Titin: a giant protein with dual roles in chromosomes and muscles
1 reference
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Metaphase chromosome structure: bands arise from a differential folding path of the highly AT-rich scaffold
1 reference
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7 January 2021
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A view of interphase chromosomes
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7 January 2021
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Sequence and position-dependence of the equilibrium accessibility of nucleosomal DNA target sites
1 reference
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7 January 2021
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The glucocorticoid receptor: rapid exchange with regulatory sites in living cells
1 reference
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reference URL
https://api.crossref.org/works/10.1016%2FS0959-437X%2800%2900169-6
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7 January 2021
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Dynamic binding of histone H1 to chromatin in living cells
1 reference
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7 January 2021
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High mobility of proteins in the mammalian cell nucleus
1 reference
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7 January 2021
based on heuristic
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A statistical-mechanical model for regulation of long-range chromatin structure and gene expression
1 reference
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A polymer model for the structural organization of chromatin loops and minibands in interphase chromosomes
1 reference
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reference URL
https://api.crossref.org/works/10.1016%2FS0959-437X%2800%2900169-6
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7 January 2021
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Locus control regions, chromatin activation and transcription.
1 reference
stated in
Crossref
reference URL
https://api.crossref.org/works/10.1016%2FS0959-437X%2800%2900169-6
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7 January 2021
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Identifiers
DOI
10.1016/S0959-437X(00)00169-6
1 reference
stated in
Europe PubMed Central
PubMed ID
11250134
retrieved
31 July 2017
PubMed ID
11250134
1 reference
stated in
Europe PubMed Central
PubMed ID
11250134
retrieved
31 July 2017
ResearchGate publication ID
12082550
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