Ultrastructural visualization of 3D chromatin folding using volume electron microscopy and DNA in situ hybridization

The genome is folded in 3-dimensions, though the lack of robust ultra-resolution imaging makes this difficult to visualise. Here, the authors present 3D-EMISH that combines serial block-face scanning electron microscopy with in situ hybridization.

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Autores principales: Paweł Trzaskoma, Błażej Ruszczycki, Byoungkoo Lee, Katarzyna K. Pels, Katarzyna Krawczyk, Grzegorz Bokota, Andrzej A. Szczepankiewicz, Jesse Aaron, Agnieszka Walczak, Małgorzata A. Śliwińska, Adriana Magalska, Michal Kadlof, Artur Wolny, Zofia Parteka, Sebastian Arabasz, Magdalena Kiss-Arabasz, Dariusz Plewczyński, Yijun Ruan, Grzegorz M. Wilczyński
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/314efe399d9e425fbc4fd722009456ec
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spelling oai:doaj.org-article:314efe399d9e425fbc4fd722009456ec2021-12-02T17:32:27ZUltrastructural visualization of 3D chromatin folding using volume electron microscopy and DNA in situ hybridization10.1038/s41467-020-15987-22041-1723https://doaj.org/article/314efe399d9e425fbc4fd722009456ec2020-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-15987-2https://doaj.org/toc/2041-1723The genome is folded in 3-dimensions, though the lack of robust ultra-resolution imaging makes this difficult to visualise. Here, the authors present 3D-EMISH that combines serial block-face scanning electron microscopy with in situ hybridization.Paweł TrzaskomaBłażej RuszczyckiByoungkoo LeeKatarzyna K. PelsKatarzyna KrawczykGrzegorz BokotaAndrzej A. SzczepankiewiczJesse AaronAgnieszka WalczakMałgorzata A. ŚliwińskaAdriana MagalskaMichal KadlofArtur WolnyZofia PartekaSebastian ArabaszMagdalena Kiss-ArabaszDariusz PlewczyńskiYijun RuanGrzegorz M. WilczyńskiNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Paweł Trzaskoma
Błażej Ruszczycki
Byoungkoo Lee
Katarzyna K. Pels
Katarzyna Krawczyk
Grzegorz Bokota
Andrzej A. Szczepankiewicz
Jesse Aaron
Agnieszka Walczak
Małgorzata A. Śliwińska
Adriana Magalska
Michal Kadlof
Artur Wolny
Zofia Parteka
Sebastian Arabasz
Magdalena Kiss-Arabasz
Dariusz Plewczyński
Yijun Ruan
Grzegorz M. Wilczyński
Ultrastructural visualization of 3D chromatin folding using volume electron microscopy and DNA in situ hybridization
description The genome is folded in 3-dimensions, though the lack of robust ultra-resolution imaging makes this difficult to visualise. Here, the authors present 3D-EMISH that combines serial block-face scanning electron microscopy with in situ hybridization.
format article
author Paweł Trzaskoma
Błażej Ruszczycki
Byoungkoo Lee
Katarzyna K. Pels
Katarzyna Krawczyk
Grzegorz Bokota
Andrzej A. Szczepankiewicz
Jesse Aaron
Agnieszka Walczak
Małgorzata A. Śliwińska
Adriana Magalska
Michal Kadlof
Artur Wolny
Zofia Parteka
Sebastian Arabasz
Magdalena Kiss-Arabasz
Dariusz Plewczyński
Yijun Ruan
Grzegorz M. Wilczyński
author_facet Paweł Trzaskoma
Błażej Ruszczycki
Byoungkoo Lee
Katarzyna K. Pels
Katarzyna Krawczyk
Grzegorz Bokota
Andrzej A. Szczepankiewicz
Jesse Aaron
Agnieszka Walczak
Małgorzata A. Śliwińska
Adriana Magalska
Michal Kadlof
Artur Wolny
Zofia Parteka
Sebastian Arabasz
Magdalena Kiss-Arabasz
Dariusz Plewczyński
Yijun Ruan
Grzegorz M. Wilczyński
author_sort Paweł Trzaskoma
title Ultrastructural visualization of 3D chromatin folding using volume electron microscopy and DNA in situ hybridization
title_short Ultrastructural visualization of 3D chromatin folding using volume electron microscopy and DNA in situ hybridization
title_full Ultrastructural visualization of 3D chromatin folding using volume electron microscopy and DNA in situ hybridization
title_fullStr Ultrastructural visualization of 3D chromatin folding using volume electron microscopy and DNA in situ hybridization
title_full_unstemmed Ultrastructural visualization of 3D chromatin folding using volume electron microscopy and DNA in situ hybridization
title_sort ultrastructural visualization of 3d chromatin folding using volume electron microscopy and dna in situ hybridization
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/314efe399d9e425fbc4fd722009456ec
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