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ZNF91 deletion in human embryonic stem cells leads to ectopic activation of SVA retrotransposons and up-regulation of KRAB zinc finger gene clusters

Transposable element (TE) invasions have shaped vertebrate genomes over the course of evolution. They have contributed an extra layer of species-specific gene regulation by providing novel transcription factor binding sites. In humans, SINE-VNTR-Alu (SVA) elements are one of three still active TE fa...

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Autores principales: Haring, Nina L., van Bree, Elisabeth J., Jordaan, Whitney S., Roels, Judith R.E., Sotomayor, Gonzalo Congrains, Hey, Tiziana M., White, Fred T.G., Galland, Marc D., Smidt, Marten P., Jacobs, Frank M.J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8015857/
https://www.ncbi.nlm.nih.gov/pubmed/33722937
http://dx.doi.org/10.1101/gr.265348.120
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author Haring, Nina L.
van Bree, Elisabeth J.
Jordaan, Whitney S.
Roels, Judith R.E.
Sotomayor, Gonzalo Congrains
Hey, Tiziana M.
White, Fred T.G.
Galland, Marc D.
Smidt, Marten P.
Jacobs, Frank M.J.
author_facet Haring, Nina L.
van Bree, Elisabeth J.
Jordaan, Whitney S.
Roels, Judith R.E.
Sotomayor, Gonzalo Congrains
Hey, Tiziana M.
White, Fred T.G.
Galland, Marc D.
Smidt, Marten P.
Jacobs, Frank M.J.
author_sort Haring, Nina L.
collection PubMed
description Transposable element (TE) invasions have shaped vertebrate genomes over the course of evolution. They have contributed an extra layer of species-specific gene regulation by providing novel transcription factor binding sites. In humans, SINE-VNTR-Alu (SVA) elements are one of three still active TE families; approximately 2800 SVA insertions exist in the human genome, half of which are human-specific. TEs are often silenced by KRAB zinc finger (KZNF) proteins recruiting corepressor proteins that establish a repressive chromatin state. A number of KZNFs have been reported to bind SVAs, but their individual contribution to repressing SVAs and their roles in suppressing SVA-mediated gene-regulatory effects remains elusive. We analyzed the genome-wide binding profile for ZNF91 in human cells and found that ZNF91 interacts with the VNTR region of SVAs. Through CRISPR-Cas9-mediated deletion of ZNF91 in human embryonic stem cells, we established that loss of ZNF91 results in increased transcriptional activity of SVAs. In contrast, SVA activation was not observed upon genetic deletion of the ZNF611 gene encoding another strong SVA interactor. Epigenetic profiling confirmed the loss of SVA repression in the absence of ZNF91 and revealed that mainly evolutionary young SVAs gain gene activation-associated epigenetic modifications. Genes close to activated SVAs showed a mild up-regulation, indicating SVAs adopt properties of cis-regulatory elements in the absence of repression. Notably, genome-wide derepression of SVAs elicited the communal up-regulation of KZNFs that reside in KZNF clusters. This phenomenon may provide new insights into the potential mechanisms used by the host genome to sense and counteract TE invasions.
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spelling pubmed-80158572021-04-21 ZNF91 deletion in human embryonic stem cells leads to ectopic activation of SVA retrotransposons and up-regulation of KRAB zinc finger gene clusters Haring, Nina L. van Bree, Elisabeth J. Jordaan, Whitney S. Roels, Judith R.E. Sotomayor, Gonzalo Congrains Hey, Tiziana M. White, Fred T.G. Galland, Marc D. Smidt, Marten P. Jacobs, Frank M.J. Genome Res Research Transposable element (TE) invasions have shaped vertebrate genomes over the course of evolution. They have contributed an extra layer of species-specific gene regulation by providing novel transcription factor binding sites. In humans, SINE-VNTR-Alu (SVA) elements are one of three still active TE families; approximately 2800 SVA insertions exist in the human genome, half of which are human-specific. TEs are often silenced by KRAB zinc finger (KZNF) proteins recruiting corepressor proteins that establish a repressive chromatin state. A number of KZNFs have been reported to bind SVAs, but their individual contribution to repressing SVAs and their roles in suppressing SVA-mediated gene-regulatory effects remains elusive. We analyzed the genome-wide binding profile for ZNF91 in human cells and found that ZNF91 interacts with the VNTR region of SVAs. Through CRISPR-Cas9-mediated deletion of ZNF91 in human embryonic stem cells, we established that loss of ZNF91 results in increased transcriptional activity of SVAs. In contrast, SVA activation was not observed upon genetic deletion of the ZNF611 gene encoding another strong SVA interactor. Epigenetic profiling confirmed the loss of SVA repression in the absence of ZNF91 and revealed that mainly evolutionary young SVAs gain gene activation-associated epigenetic modifications. Genes close to activated SVAs showed a mild up-regulation, indicating SVAs adopt properties of cis-regulatory elements in the absence of repression. Notably, genome-wide derepression of SVAs elicited the communal up-regulation of KZNFs that reside in KZNF clusters. This phenomenon may provide new insights into the potential mechanisms used by the host genome to sense and counteract TE invasions. Cold Spring Harbor Laboratory Press 2021-04 /pmc/articles/PMC8015857/ /pubmed/33722937 http://dx.doi.org/10.1101/gr.265348.120 Text en © 2021 Haring et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article, published in Genome Research, is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Research
Haring, Nina L.
van Bree, Elisabeth J.
Jordaan, Whitney S.
Roels, Judith R.E.
Sotomayor, Gonzalo Congrains
Hey, Tiziana M.
White, Fred T.G.
Galland, Marc D.
Smidt, Marten P.
Jacobs, Frank M.J.
ZNF91 deletion in human embryonic stem cells leads to ectopic activation of SVA retrotransposons and up-regulation of KRAB zinc finger gene clusters
title ZNF91 deletion in human embryonic stem cells leads to ectopic activation of SVA retrotransposons and up-regulation of KRAB zinc finger gene clusters
title_full ZNF91 deletion in human embryonic stem cells leads to ectopic activation of SVA retrotransposons and up-regulation of KRAB zinc finger gene clusters
title_fullStr ZNF91 deletion in human embryonic stem cells leads to ectopic activation of SVA retrotransposons and up-regulation of KRAB zinc finger gene clusters
title_full_unstemmed ZNF91 deletion in human embryonic stem cells leads to ectopic activation of SVA retrotransposons and up-regulation of KRAB zinc finger gene clusters
title_short ZNF91 deletion in human embryonic stem cells leads to ectopic activation of SVA retrotransposons and up-regulation of KRAB zinc finger gene clusters
title_sort znf91 deletion in human embryonic stem cells leads to ectopic activation of sva retrotransposons and up-regulation of krab zinc finger gene clusters
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8015857/
https://www.ncbi.nlm.nih.gov/pubmed/33722937
http://dx.doi.org/10.1101/gr.265348.120
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