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Notch dimerization and gene dosage are important for normal heart development, intestinal stem cell maintenance, and splenic marginal zone B-cell homeostasis during mite infestation

Cooperative DNA binding is a key feature of transcriptional regulation. Here we examined the role of cooperativity in Notch signaling by CRISPR-mediated engineering of mice in which neither Notch1 nor Notch2 can homo- or heterodimerize, essential for cooperative binding to sequence-paired sites (SPS...

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Autores principales: Kobia, Francis M., Preusse, Kristina, Dai, Quanhui, Weaver, Nicholas, Hass, Matthew R., Chaturvedi, Praneet, Stein, Sarah J., Pear, Warren S., Yuan, Zhenyu, Kovall, Rhett A., Kuang, Yi, Eafergen, Natanel, Sprinzak, David, Gebelein, Brian, Brunskill, Eric W., Kopan, Raphael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7561103/
https://www.ncbi.nlm.nih.gov/pubmed/33017398
http://dx.doi.org/10.1371/journal.pbio.3000850
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author Kobia, Francis M.
Preusse, Kristina
Dai, Quanhui
Weaver, Nicholas
Hass, Matthew R.
Chaturvedi, Praneet
Stein, Sarah J.
Pear, Warren S.
Yuan, Zhenyu
Kovall, Rhett A.
Kuang, Yi
Eafergen, Natanel
Sprinzak, David
Gebelein, Brian
Brunskill, Eric W.
Kopan, Raphael
author_facet Kobia, Francis M.
Preusse, Kristina
Dai, Quanhui
Weaver, Nicholas
Hass, Matthew R.
Chaturvedi, Praneet
Stein, Sarah J.
Pear, Warren S.
Yuan, Zhenyu
Kovall, Rhett A.
Kuang, Yi
Eafergen, Natanel
Sprinzak, David
Gebelein, Brian
Brunskill, Eric W.
Kopan, Raphael
author_sort Kobia, Francis M.
collection PubMed
description Cooperative DNA binding is a key feature of transcriptional regulation. Here we examined the role of cooperativity in Notch signaling by CRISPR-mediated engineering of mice in which neither Notch1 nor Notch2 can homo- or heterodimerize, essential for cooperative binding to sequence-paired sites (SPS) located near many Notch-regulated genes. Although most known Notch-dependent phenotypes were unaffected in Notch1/2 dimer–deficient mice, a subset of tissues proved highly sensitive to loss of cooperativity. These phenotypes include heart development, compromised viability in combination with low gene dose, and the gut, developing ulcerative colitis in response to 1% dextran sulfate sodium (DSS). The most striking phenotypes—gender imbalance and splenic marginal zone B-cell lymphoma—emerged in combination with gene dose reduction or when challenged by chronic fur mite infestation. This study highlights the role of the environment in malignancy and colitis and is consistent with Notch-dependent anti-parasite immune responses being compromised in Notch dimer–deficient animals.
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spelling pubmed-75611032020-10-21 Notch dimerization and gene dosage are important for normal heart development, intestinal stem cell maintenance, and splenic marginal zone B-cell homeostasis during mite infestation Kobia, Francis M. Preusse, Kristina Dai, Quanhui Weaver, Nicholas Hass, Matthew R. Chaturvedi, Praneet Stein, Sarah J. Pear, Warren S. Yuan, Zhenyu Kovall, Rhett A. Kuang, Yi Eafergen, Natanel Sprinzak, David Gebelein, Brian Brunskill, Eric W. Kopan, Raphael PLoS Biol Research Article Cooperative DNA binding is a key feature of transcriptional regulation. Here we examined the role of cooperativity in Notch signaling by CRISPR-mediated engineering of mice in which neither Notch1 nor Notch2 can homo- or heterodimerize, essential for cooperative binding to sequence-paired sites (SPS) located near many Notch-regulated genes. Although most known Notch-dependent phenotypes were unaffected in Notch1/2 dimer–deficient mice, a subset of tissues proved highly sensitive to loss of cooperativity. These phenotypes include heart development, compromised viability in combination with low gene dose, and the gut, developing ulcerative colitis in response to 1% dextran sulfate sodium (DSS). The most striking phenotypes—gender imbalance and splenic marginal zone B-cell lymphoma—emerged in combination with gene dose reduction or when challenged by chronic fur mite infestation. This study highlights the role of the environment in malignancy and colitis and is consistent with Notch-dependent anti-parasite immune responses being compromised in Notch dimer–deficient animals. Public Library of Science 2020-10-05 /pmc/articles/PMC7561103/ /pubmed/33017398 http://dx.doi.org/10.1371/journal.pbio.3000850 Text en © 2020 Kobia et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Kobia, Francis M.
Preusse, Kristina
Dai, Quanhui
Weaver, Nicholas
Hass, Matthew R.
Chaturvedi, Praneet
Stein, Sarah J.
Pear, Warren S.
Yuan, Zhenyu
Kovall, Rhett A.
Kuang, Yi
Eafergen, Natanel
Sprinzak, David
Gebelein, Brian
Brunskill, Eric W.
Kopan, Raphael
Notch dimerization and gene dosage are important for normal heart development, intestinal stem cell maintenance, and splenic marginal zone B-cell homeostasis during mite infestation
title Notch dimerization and gene dosage are important for normal heart development, intestinal stem cell maintenance, and splenic marginal zone B-cell homeostasis during mite infestation
title_full Notch dimerization and gene dosage are important for normal heart development, intestinal stem cell maintenance, and splenic marginal zone B-cell homeostasis during mite infestation
title_fullStr Notch dimerization and gene dosage are important for normal heart development, intestinal stem cell maintenance, and splenic marginal zone B-cell homeostasis during mite infestation
title_full_unstemmed Notch dimerization and gene dosage are important for normal heart development, intestinal stem cell maintenance, and splenic marginal zone B-cell homeostasis during mite infestation
title_short Notch dimerization and gene dosage are important for normal heart development, intestinal stem cell maintenance, and splenic marginal zone B-cell homeostasis during mite infestation
title_sort notch dimerization and gene dosage are important for normal heart development, intestinal stem cell maintenance, and splenic marginal zone b-cell homeostasis during mite infestation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7561103/
https://www.ncbi.nlm.nih.gov/pubmed/33017398
http://dx.doi.org/10.1371/journal.pbio.3000850
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