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High-resolution targeted 3C interrogation of cis-regulatory element organization at genome-wide scale

High-resolution targeted 3C interrogation of cis-regulatory element organization at genome-wide scale
High-resolution targeted 3C interrogation of cis-regulatory element organization at genome-wide scale
Chromosome conformation capture (3C) provides an adaptable tool for studying diverse biological questions. Current 3C methods generally provide either low-resolution interaction profiles across the entire genome, or high-resolution interaction profiles at limited numbers of loci. Due to technical limitations, generation of reproducible high-resolution interaction profiles has not been achieved at genome-wide scale. Here, to overcome this barrier, we systematically test each step of 3C and report two improvements over current methods. We show that up to 30% of reporter events generated using the popular in situ 3C method arise from ligations between two individual nuclei, but this noise can be almost entirely eliminated by isolating intact nuclei after ligation. Using Nuclear-Titrated Capture-C, we generate reproducible high-resolution genome-wide 3C interaction profiles by targeting 8055 gene promoters in erythroid cells. By pairing high-resolution 3C interaction calls with nascent gene expression we interrogate the role of promoter hubs and super-enhancers in gene regulation.
2041-1723
Downes, Damien J.
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Beagrie, Robert A.
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Gosden, Matthew E.
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Telenius, Jelena
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Carpenter, Stephanie J.
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Nussbaum, Lea
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De Ornellas, Sara
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Sergeant, Martin
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Eijsbouts, Chris Q.
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Schwessinger, Ron
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Kerry, Jon
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Roberts, Nigel
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Shivalingam, Arun
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El-Sagheer, Afaf
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Oudelaar, A. Marieke
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Brown, Tom
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Buckle, Veronica J.
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Davies, James O.J.
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Hughes, Jim R.
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Downes, Damien J.
60dc3d78-7e08-4e24-b634-06fb0614c770
Beagrie, Robert A.
94e730f9-d1eb-4dae-87fc-fd8a2d54c0a4
Gosden, Matthew E.
3cec8efe-8602-43d7-8179-d1f69a5ee5f5
Telenius, Jelena
db3cda9a-4917-42f3-b616-62124ff735a5
Carpenter, Stephanie J.
96247ccc-f910-47f7-84e6-f22da0c04a1a
Nussbaum, Lea
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De Ornellas, Sara
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Sergeant, Martin
94b99452-3514-490b-99e0-92d205116ac8
Eijsbouts, Chris Q.
4b19e132-2370-45da-8572-337ac697f52a
Schwessinger, Ron
c232c78c-76c4-4237-8086-41260a5ee0ba
Kerry, Jon
3208a745-98f2-43c9-a809-8aae51e9b3d3
Roberts, Nigel
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Shivalingam, Arun
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El-Sagheer, Afaf
05b8295a-64ad-4fdf-ad57-c34934a46c04
Oudelaar, A. Marieke
9396c0d7-6345-4047-aa23-138d45f00a94
Brown, Tom
a64aae36-bb30-42df-88a2-11be394e8c89
Buckle, Veronica J.
5054c5f5-a7a0-40a2-81e2-74c8f98acdcc
Davies, James O.J.
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Hughes, Jim R.
e44168ab-91dc-43bd-b966-c33ea21051e7

Downes, Damien J., Beagrie, Robert A., Gosden, Matthew E., Telenius, Jelena, Carpenter, Stephanie J., Nussbaum, Lea, De Ornellas, Sara, Sergeant, Martin, Eijsbouts, Chris Q., Schwessinger, Ron, Kerry, Jon, Roberts, Nigel, Shivalingam, Arun, El-Sagheer, Afaf, Oudelaar, A. Marieke, Brown, Tom, Buckle, Veronica J., Davies, James O.J. and Hughes, Jim R. (2021) High-resolution targeted 3C interrogation of cis-regulatory element organization at genome-wide scale. Nature Communications, 12, [531]. (doi:10.1038/s41467-020-20809-6).

Record type: Article

Abstract

Chromosome conformation capture (3C) provides an adaptable tool for studying diverse biological questions. Current 3C methods generally provide either low-resolution interaction profiles across the entire genome, or high-resolution interaction profiles at limited numbers of loci. Due to technical limitations, generation of reproducible high-resolution interaction profiles has not been achieved at genome-wide scale. Here, to overcome this barrier, we systematically test each step of 3C and report two improvements over current methods. We show that up to 30% of reporter events generated using the popular in situ 3C method arise from ligations between two individual nuclei, but this noise can be almost entirely eliminated by isolating intact nuclei after ligation. Using Nuclear-Titrated Capture-C, we generate reproducible high-resolution genome-wide 3C interaction profiles by targeting 8055 gene promoters in erythroid cells. By pairing high-resolution 3C interaction calls with nascent gene expression we interrogate the role of promoter hubs and super-enhancers in gene regulation.

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Accepted/In Press date: 16 December 2020
e-pub ahead of print date: 22 January 2021

Identifiers

Local EPrints ID: 478436
URI: http://eprints.soton.ac.uk/id/eprint/478436
ISSN: 2041-1723
PURE UUID: a7ce15ce-d246-4c32-86f2-814ec6dec3bf
ORCID for Afaf El-Sagheer: ORCID iD orcid.org/0000-0001-8706-1292

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Date deposited: 30 Jun 2023 16:53
Last modified: 17 Mar 2024 03:04

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Contributors

Author: Damien J. Downes
Author: Robert A. Beagrie
Author: Matthew E. Gosden
Author: Jelena Telenius
Author: Stephanie J. Carpenter
Author: Lea Nussbaum
Author: Sara De Ornellas
Author: Martin Sergeant
Author: Chris Q. Eijsbouts
Author: Ron Schwessinger
Author: Jon Kerry
Author: Nigel Roberts
Author: Arun Shivalingam
Author: Afaf El-Sagheer ORCID iD
Author: A. Marieke Oudelaar
Author: Tom Brown
Author: Veronica J. Buckle
Author: James O.J. Davies
Author: Jim R. Hughes

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