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Recurrent de novo missense variants across multiple histone H4 genes underlie a neurodevelopmental syndrome

Recurrent de novo missense variants across multiple histone H4 genes underlie a neurodevelopmental syndrome
Recurrent de novo missense variants across multiple histone H4 genes underlie a neurodevelopmental syndrome
Chromatin is essentially an array of nucleosomes, each of which consists of the DNA double-stranded fiber wrapped around a histone octamer. This organization supports cellular processes such as DNA replication, DNA transcription, and DNA repair in all eukaryotes. Human histone H4 is encoded by fourteen canonical histone H4 genes, all differing at the nucleotide level but encoding an invariant protein. Here, we present a cohort of 29 subjects with de novo missense variants in six H4 genes (H4C3, H4C4, H4C5, H4C6, H4C9, and H4C11) identified by whole-exome sequencing and matchmaking. All individuals present with neurodevelopmental features of intellectual disability and motor and/or gross developmental delay, while non-neurological features are more variable. Ten amino acids are affected, six recurrently, and are all located within the H4 core or C-terminal tail. These variants cluster to specific regions of the core H4 globular domain, where protein-protein interactions occur with either other histone subunits or histone chaperones. Functional consequences of the identified variants were evaluated in zebrafish embryos, which displayed abnormal general development, defective head organs, and reduced body axis length, providing compelling evidence for the causality of the reported disorder(s). While multiple developmental syndromes have been linked to chromatin-associated factors, missense-bearing histone variants (e.g., H3 oncohistones) are only recently emerging as a major cause of pathogenicity. Our findings establish a broader involvement of H4 variants in developmental syndromes.
histone H4, intellectual disability, microcephaly, neurodevelopmental disorder, nucleosome, zebrafish
0002-9297
750-758
Tessadori, Federico
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Knapp, Karen
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Smithson, Sarah
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O'Donnell-Luria, Anne
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Tessadori, Federico, Duran, Karen, Knapp, Karen, Fellner, Matthias, Smithson, Sarah, Beleza‐Meireles, Ana, Elting, Mariet W, Waisfisz, Quinten, O'Donnell-Luria, Anne, Nowak, Catherine, Douglas, Jessica, Ronan, Anne, Brunet, Theresa, Kotzaeridou, Urania, Svihovec, Shayna, Saenz, Margarita S, Thiffault, Isabelle, Del Viso, Florencia, Devine, Patrick, Rego, Shannon, Tenney, Jessica, Ruivenkamp, Claudia AL, Koene, Saskia, Robertson, Stephen P., Deshpande, Charulata, Pfundt, Rolph, Verbeek, Nienke, van de Kamp, Jiddeke M., Weiss, Janneke M M, Ruiz, Anna, Gabau, Elisabeth, Banne, Ehud, Pepler, Alexander, Bottani, Armand, Laurant, Sacha, Guipponi, Michel, Bijlsma, Emilia, Bruel, Ange-Line, Sorlin, Arthur, Willis, Mary, Powis, Zoe, Smol, Thomas, Vincent-Delorme, Catherine, Baralle, Diana, Colin, Estelle, Revencu, Nicole, Calpena, Eduardo, Wilkie, Andrew O.M., Chopra, Maya, Cormier-Daire, Valérie, Keren, Boris, Afenjar, Alexandra, Niceta, Marcello, Terracciano, A., Specchio, Nicola, Tartaglia, M., Rio, Marlene, Barcia, Giulia, Rondeau, sophie, Colson, Cindy, Bakkers, Jeroen, Mace, Peter D, Bicknell, Louise S. and van Haaften, Gijs (2022) Recurrent de novo missense variants across multiple histone H4 genes underlie a neurodevelopmental syndrome. The American Journal of Human Genetics, 109 (4), 750-758. (doi:10.1016/j.ajhg.2022.02.003).

Record type: Article

Abstract

Chromatin is essentially an array of nucleosomes, each of which consists of the DNA double-stranded fiber wrapped around a histone octamer. This organization supports cellular processes such as DNA replication, DNA transcription, and DNA repair in all eukaryotes. Human histone H4 is encoded by fourteen canonical histone H4 genes, all differing at the nucleotide level but encoding an invariant protein. Here, we present a cohort of 29 subjects with de novo missense variants in six H4 genes (H4C3, H4C4, H4C5, H4C6, H4C9, and H4C11) identified by whole-exome sequencing and matchmaking. All individuals present with neurodevelopmental features of intellectual disability and motor and/or gross developmental delay, while non-neurological features are more variable. Ten amino acids are affected, six recurrently, and are all located within the H4 core or C-terminal tail. These variants cluster to specific regions of the core H4 globular domain, where protein-protein interactions occur with either other histone subunits or histone chaperones. Functional consequences of the identified variants were evaluated in zebrafish embryos, which displayed abnormal general development, defective head organs, and reduced body axis length, providing compelling evidence for the causality of the reported disorder(s). While multiple developmental syndromes have been linked to chromatin-associated factors, missense-bearing histone variants (e.g., H3 oncohistones) are only recently emerging as a major cause of pathogenicity. Our findings establish a broader involvement of H4 variants in developmental syndromes.

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Accepted/In Press date: 6 February 2022
e-pub ahead of print date: 23 February 2022
Published date: 7 April 2022
Additional Information: Acknowledgments The authors thank all individuals and their families who were involved in this study; Marine Tessarech for molecular diag- nostic assistance; Anisha Chopra for experimental work; and Jacques Giltay, Meriel McEntagart, and Cynthia Morton for advice. F.T. is supported by NWO grant NWO/OCENW. GROOT.2019.029, A.O.M.W. was supported by the NIHR Oxford Biomedical Research Centre, K.K. and L.S.B. were sup- ported by the Marsden Fund, and L.S.B. was supported by a Rutherford Discovery Fellowship, both administered by the Royal Society of New Zealand. A.O.D.L. is supported by a Manton Endowed Scholar award. Project support was provided by Fondazione Bambino Gesu` (Vite Coraggiose), Italian Minis- try of Health (5x1000, CCR-2017-23669081 and RCR-2020- 23670068_001), Italian Ministry of Research (FOE 2019), and the Cliff Broad Family Trust, administered by the Neurological Foundation of New Zealand. The opinions expressed here are those of the authors and do not reflect those of the Navy, the Department of Defense, or the United States government. The DDD study presents independent research commissioned by the Health Innovation Challenge Fund (grant HICF-1009-003), a parallel funding partnership between the Wellcome Trust with the Department of Health and the Wellcome Trust Sanger Institute (grant WT098051). The views expressed in this publi- cation are those of the author(s) and not necessarily those of the Wellcome Trust or the Department of Health. The study has UK Research Ethics Committee approval (10/H0305/83, granted by the Cambridge South REC, and GEN/284/12, granted by the Republic of Ireland REC). The research team acknowl- edges the support of the National Institute for Health Research through the Comprehensive Clinical Research Network.
Keywords: histone H4, intellectual disability, microcephaly, neurodevelopmental disorder, nucleosome, zebrafish

Identifiers

Local EPrints ID: 454960
URI: http://eprints.soton.ac.uk/id/eprint/454960
ISSN: 0002-9297
PURE UUID: 7f272f4b-12c9-4f3d-8ab2-fdfe40491fc3
ORCID for Diana Baralle: ORCID iD orcid.org/0000-0003-3217-4833

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Date deposited: 02 Mar 2022 17:57
Last modified: 17 Mar 2024 07:08

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Contributors

Author: Federico Tessadori
Author: Karen Duran
Author: Karen Knapp
Author: Matthias Fellner
Author: Sarah Smithson
Author: Ana Beleza‐Meireles
Author: Mariet W Elting
Author: Quinten Waisfisz
Author: Anne O'Donnell-Luria
Author: Catherine Nowak
Author: Jessica Douglas
Author: Anne Ronan
Author: Theresa Brunet
Author: Urania Kotzaeridou
Author: Shayna Svihovec
Author: Margarita S Saenz
Author: Isabelle Thiffault
Author: Florencia Del Viso
Author: Patrick Devine
Author: Shannon Rego
Author: Jessica Tenney
Author: Claudia AL Ruivenkamp
Author: Saskia Koene
Author: Stephen P. Robertson
Author: Charulata Deshpande
Author: Rolph Pfundt
Author: Nienke Verbeek
Author: Jiddeke M. van de Kamp
Author: Janneke M M Weiss
Author: Anna Ruiz
Author: Elisabeth Gabau
Author: Ehud Banne
Author: Alexander Pepler
Author: Armand Bottani
Author: Sacha Laurant
Author: Michel Guipponi
Author: Emilia Bijlsma
Author: Ange-Line Bruel
Author: Arthur Sorlin
Author: Mary Willis
Author: Zoe Powis
Author: Thomas Smol
Author: Catherine Vincent-Delorme
Author: Diana Baralle ORCID iD
Author: Estelle Colin
Author: Nicole Revencu
Author: Eduardo Calpena
Author: Andrew O.M. Wilkie
Author: Maya Chopra
Author: Valérie Cormier-Daire
Author: Boris Keren
Author: Alexandra Afenjar
Author: Marcello Niceta
Author: A. Terracciano
Author: Nicola Specchio
Author: M. Tartaglia
Author: Marlene Rio
Author: Giulia Barcia
Author: sophie Rondeau
Author: Cindy Colson
Author: Jeroen Bakkers
Author: Peter D Mace
Author: Louise S. Bicknell
Author: Gijs van Haaften

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