Population-based 3D genome structure analysis reveals driving forces in spatial genome organization.
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Soft X-Ray Tomography Reveals Gradual Chromatin Compaction and Reorganization during Neurogenesis In Vivo.Chromosomal dynamics predicted by an elastic network model explains genome-wide accessibility and long-range couplingsMining 3D genome structure populations identifies major factors governing the stability of regulatory communitiesSpectral imaging to visualize higher-order genomic organization.Three-dimensional chromosome structures from energy landscape.Chrom3D: three-dimensional genome modeling from Hi-C and nuclear lamin-genome contacts.Comprehensive characterization of neutrophil genome topologyThe three-dimensional genome organization of Drosophila melanogaster through data integration.Integrative modelling of cellular assemblies.Cajal body function in genome organization and transcriptome diversity.3D structures of individual mammalian genomes studied by single-cell Hi-C.Nuclear Dynamics of Heterochromatin Repair.And yet, it moves: nuclear and chromatin dynamics of a heterochromatic double-strand break.Integrative structure modeling with the Integrative Modeling Platform.Computational construction of 3D chromatin ensembles and prediction of functional interactions of alpha-globin locus from 5C data.BL-Hi-C is an efficient and sensitive approach for capturing structural and regulatory chromatin interactions.Network analysis identifies chromosome intermingling regions as regulatory hotspots for transcription.Reconstitution of the oocyte nucleolus in mice through a single nucleolar protein, NPM2.Reconstructing spatial organizations of chromosomes through manifold learning.Producing genome structure populations with the dynamic and automated PGS software.Laminopathy-causing lamin A mutations reconfigure lamina-associated domains and local spatial chromatin conformation.High-resolution 3D models of Caulobacter crescentus chromosome reveal genome structural variability and organization.Epigenomes in Cardiovascular Disease.3D modeling of chromatin structure: is there a way to integrate and reconcile single cell and population experimental data?Are There Knots in Chromosomes?
P2860
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P2860
Population-based 3D genome structure analysis reveals driving forces in spatial genome organization.
description
2016 nî lūn-bûn
@nan
2016年の論文
@ja
2016年論文
@yue
2016年論文
@zh-hant
2016年論文
@zh-hk
2016年論文
@zh-mo
2016年論文
@zh-tw
2016年论文
@wuu
2016年论文
@zh
2016年论文
@zh-cn
name
Population-based 3D genome str ...... n spatial genome organization.
@ast
Population-based 3D genome str ...... n spatial genome organization.
@en
type
label
Population-based 3D genome str ...... n spatial genome organization.
@ast
Population-based 3D genome str ...... n spatial genome organization.
@en
prefLabel
Population-based 3D genome str ...... n spatial genome organization.
@ast
Population-based 3D genome str ...... n spatial genome organization.
@en
P2093
P2860
P356
P1476
Population-based 3D genome str ...... in spatial genome organization
@en
P2093
Carolyn A Larabell
Frank Alber
Haochen Li
Mark A Le Gros
Reza Kalhor
Shengli Hao
Wenyuan Li
P2860
P304
P356
10.1073/PNAS.1512577113
P407
P577
2016-03-07T00:00:00Z