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Citations to this article

Hirschsprung-like disease is exacerbated by reduced de novo GMP synthesis
Jonathan I. Lake, … , Brittany L. Graham, Robert O. Heuckeroth
Jonathan I. Lake, … , Brittany L. Graham, Robert O. Heuckeroth
Published October 15, 2013
Citation Information: J Clin Invest. 2013;123(11):4875-4887. https://doi.org/10.1172/JCI69781.
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Research Article Gastroenterology Article has an altmetric score of 10

Hirschsprung-like disease is exacerbated by reduced de novo GMP synthesis

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Abstract

Hirschsprung disease (HSCR) is a partially penetrant oligogenic birth defect that occurs when enteric nervous system (ENS) precursors fail to colonize the distal bowel during early pregnancy. Genetic defects underlie HSCR, but much of the variability in the occurrence and severity of the birth defect remain unexplained. We hypothesized that nongenetic factors might contribute to disease development. Here we found that mycophenolate, an inhibitor of de novo guanine nucleotide biosynthesis, and 8 other drugs identified in a zebrafish screen impaired ENS development. In mice, mycophenolate treatment selectively impaired ENS precursor proliferation, delayed precursor migration, and induced bowel aganglionosis. In 2 different mouse models of HSCR, addition of mycophenolate increased the penetrance and severity of Hirschsprung-like pathology. Mycophenolate treatment also reduced ENS precursor migration as well as lamellipodia formation, proliferation, and survival in cultured enteric neural crest–derived cells. Using X-inactivation mosaicism for the purine salvage gene Hprt, we found that reduced ENS precursor proliferation most likely causes mycophenolate-induced migration defects and aganglionosis. To the best of our knowledge, mycophenolate is the first medicine identified that causes major ENS malformations and Hirschsprung-like pathology in a mammalian model. These studies demonstrate a critical role for de novo guanine nucleotide biosynthesis in ENS development and suggest that some cases of HSCR may be preventable.

Authors

Jonathan I. Lake, Olga A. Tusheva, Brittany L. Graham, Robert O. Heuckeroth

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Total citations by year

Year: 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2013 Total
Citations: 1 1 1 2 2 3 5 2 6 6 1 30
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Citations to this article (30)

Title and authors Publication Year
Virus-Triggered Autoimmunity Was Associated With Hirschsprung's Disease Through Activation of Innate Immunity
Zhong W, Lan C, Chen Y, Song K, Ma Z, Zeng J, Huang L, Zhang Y, Zhu Y, Xia H
Journal of Immunology Research 2024
Suppression of PGE2/EP2 signaling alleviates Hirschsprung disease by upregulating p38 mitogen-activated protein kinase activity.
Wang J, Zhi Z, Ding J, Jia N, Hu Y, Cai J, Li H, Tang J, Tang W, Mao X
Journal of Molecular Medicine 2023
Identification and validation of the common pathogenesis and hub biomarkers in Hirschsprung disease complicated with Crohn’s disease
Wang J, Li Z, Xiao J, Wu L, Chen K, Zhu T, Feng C, Zhuansun D, Meng X, Feng J
Frontiers in immunology 2022
Cell-autonomous retinoic acid receptor signaling has stage-specific effects on mouse enteric nervous system
Tao Gao, Elizabeth C. Wright-Jin, Rajarshi Sengupta, Jessica B. Anderson, Robert O. Heuckeroth
JCI Insight 2021
Zebrafish: A Model Organism for Studying Enteric Nervous System Development and Disease
LE Kuil, RK Chauhan, WW Cheng, RM Hofstra, MM Alves
Frontiers in Cell and Developmental Biology 2021
Dlx1/2 mice have abnormal enteric nervous system function
Christina M. Wright, James P. Garifallou, Sabine Schneider, Heather L. Mentch, Deepika R. Kothakapa, Beth A. Maguire, Robert O. Heuckeroth
JCI Insight 2020
ChIP-Seq-Based Approach in Mouse Enteric Precursor Cells Reveals New Potential Genes with a Role in Enteric Nervous System Development and Hirschsprung Disease
L Villalba-Benito, A Torroglosa, B Luzón-Toro, RM Fernández, MJ Moya-Jiménez, G Antiñolo, S Borrego
International journal of molecular sciences 2020
Down Syndrome Mouse Models have an Abnormal Enteric Nervous System
Ellen Schill, Christina Wright, Alisha Jamil, Jonathan LaCombe, Randall J Roper, Robert Heuckeroth
JCI Insight 2019
Gut microbiota-mediated Gene-Environment interaction in the TashT mouse model of Hirschsprung disease
AM Touré, M Landry, O Souchkova, SW Kembel, N Pilon
Scientific Reports 2019
Increased miR-214 expression suppresses cell migration and proliferation in Hirschsprung disease by interacting with PLAGL2
L Wu, W Yuan, J Chen, Z Zhou, Y Shu, J Ji, Z Liu, Q Tang, X Zhang, X Shu
Pediatric Research 2019
Hirschsprung disease — integrating basic science and clinical medicine to improve outcomes
RO Heuckeroth
Nature Reviews Gastroenterology & Hepatology 2018
Advances in Enteric Neurobiology: The “Brain” in the Gut in Health and Disease
S Kulkarni, J Ganz, J Bayrer, L Becker, M Bogunovic, M Rao
The Journal of neuroscience : the official journal of the Society for Neuroscience 2018
Loss of Tbx3 in murine neural crest reduces enteric glia and causes cleft palate, but does not influence heart development or bowel transit
SH López, M Avetisyan, CM Wright, K Mesbah, RG Kelly, AM Moon, RO Heuckeroth
Developmental Biology 2018
Muscularis macrophage development in the absence of an enteric nervous system
M Avetisyan, JE Rood, SH Lopez, R Sengupta, E Wright-Jin, JD Dougherty, EM Behrens, RO Heuckeroth
Proceedings of the National Academy of Sciences 2018
RET somatic mutations are underrecognized in Hirschsprung disease
Q Jiang, F Liu, C Miao, Q Li, Z Zhang, P Xiao, L Su, K Yu, X Chen, F Zhang, A Chakravarti, L Li
Genetics in Medicine 2018
Sporadic Hirschsprung Disease: Mutational Spectrum and Novel Candidate Genes Revealed by Next-generation Sequencing
Z Zhang, Q Li, M Diao, N Liu, W Cheng, P Xiao, J Zou, L Su, K Yu, J Wu, L Li, Q Jiang
Scientific Reports 2017
Potential association between ITPKC genetic variations and Hirschsprung disease
J Kim, S Jung, J Shin, H Cheong, J Seo, D Kim, J Oh, H Kim, K Jung, H Shin
Molecular Biology Reports 2017
A Novel Zebrafish ret Heterozygous Model of Hirschsprung Disease Identifies a Functional Role for mapk10 as a Modifier of Enteric Nervous System Phenotype Severity
TA Heanue, W Boesmans, DM Bell, K Kawakami, PV Berghe, V Pachnis, RM Hofstra
PLoS genetics 2016
Gene-environment interactions and the enteric nervous system: Neural plasticity and Hirschsprung disease prevention
RO Heuckeroth, KH Schäfer
Developmental Biology 2016
Mouse models of Hirschsprung disease and other developmental disorders of the enteric nervous system: Old and new players
N Bondurand, EM Southard-Smith
Developmental Biology 2016
Exome-Wide Association Study Identified New Risk Loci for Hirschsprung’s Disease
W Tang, J Tang, Y Zhao, Y Qin, G Jin, X Xu, H Zhu, H Shen, X Wang, Z Hu, Y Xia
Molecular Neurobiology 2016
Ibuprofen slows migration and inhibits bowel colonization by enteric nervous system precursors in zebrafish, chick and mouse
EM Schill, JI Lake, OA Tusheva, N Nagy, SK Bery, L Foster, M Avetisyan, SL Johnson, WF Stenson, AM Goldstein, RO Heuckeroth
Developmental Biology 2016
Suppressive action of miRNAs to ARP2/3 complex reduces cell migration and proliferation via RAC isoforms in Hirschsprung disease
W Tang, P Cai, W Huo, H Li, J Tang, D Zhu, H Xie, P Chen, B Hang, S Wang, Y Xia
Journal of Cellular and Molecular Medicine 2016
Hirschsprung disease, Down syndrome and missing heritability: too much collagen slows migration
Robert Heuckeroth
Journal of Clinical Investigation 2015
A novel collagen VI-dependent pathogenic mechanism for Hirschsprung’s disease
Rodolphe Soret, Mathilde Mennetrey, Karl-F. Bergeron, Anne Dariel, Michel Neunlist, Franziska Grunder, Christophe Faure, David W. Silversides, Nicolas Pilon
Journal of Clinical Investigation 2015
Building a second brain in the bowel
Marina Avetisyan, Ellen Schill, Robert Heuckeroth
Journal of Clinical Investigation 2015
SLIT2/ROBO1-miR-218-1-RET/PLAG1: a new disease pathway involved in Hirschsprung's disease
W Tang, J Tang, J He, Z Zhou, Y Qin, J Qin, B Li, X Xu, Q Geng, W Jiang, W Wu, X Wang, Y Xia
Journal of Cellular and Molecular Medicine 2015
Human and murine tissue-engineered colon exhibit diverse neuronal subtypes and can be populated by enteric nervous system progenitor cells when donor colon is aganglionic
MM Wieck, WN El-Nachef, X Hou, RG Spurrier, KA Holoyda, KA Schall, SM Garcia, MK Collins, A Trecartin, Z Cheng, PK Frykman, TC Grikscheit
Tissue Engineering Part A 2015
Neural crest requires Impdh2 for development of the enteric nervous system, great vessels, and craniofacial skeleton
JI Lake, M Avetisyan, AG Zimmermann, RO Heuckeroth
Developmental Biology 2015
Role for nongenetic factors in the development of Hirschsprung disease?
N Wood
Nature Reviews Gastroenterology & Hepatology 2013

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