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Team architecture in 3D genomic interactions revealed through nanopore sequencing
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/ Gene expression
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2022
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Team architecture in 3D genomic interactions revealed through nanopore sequencing
by
in
631/208/177
/ 631/208/200
/ Agriculture
/ Algorithms
/ Androgens
/ Binding sites
/ Bioinformatics
/ Biomedical and Life Sciences
/ Biomedical Engineering/Biotechnology
/ Biomedicine
/ Biotechnology
/ Cellular structure
/ Collaboration
/ Epstein-Barr virus
/ Experiments
/ Gene expression
/ Gene loci
/ Genomes
/ Life Sciences
/ Meetings
/ Regulatory sequences
/ Research Briefing
/ Structure-function relationships
/ Teams
2022
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Team architecture in 3D genomic interactions revealed through nanopore sequencing
in
631/208/177
/ 631/208/200
/ Agriculture
/ Algorithms
/ Androgens
/ Binding sites
/ Bioinformatics
/ Biomedical and Life Sciences
/ Biomedical Engineering/Biotechnology
/ Biomedicine
/ Biotechnology
/ Cellular structure
/ Collaboration
/ Epstein-Barr virus
/ Experiments
/ Gene expression
/ Gene loci
/ Genomes
/ Life Sciences
/ Meetings
/ Regulatory sequences
/ Research Briefing
/ Structure-function relationships
/ Teams
2022
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Team architecture in 3D genomic interactions revealed through nanopore sequencing
Journal Article
Team architecture in 3D genomic interactions revealed through nanopore sequencing
2022
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Overview
Are major decisions in the cell made through pairs of interacting loci (enhancers and promoters) or larger teams of cooperating regulatory elements? A new genome-wide assay and algorithm answers this question and provides a scalable technology to link new dimensions of genome structure with cellular function.
Publisher
Nature Publishing Group US,Nature Publishing Group
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