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Genotype–phenotype correlations and novel molecular insights into the DHX30-associated neurodevelopmental disorders

Authors :
Ilaria Mannucci
Nghi D. P. Dang
Hannes Huber
Jaclyn B. Murry
Jeff Abramson
Thorsten Althoff
Siddharth Banka
Gareth Baynam
David Bearden
Ana Beleza-Meireles
Paul J. Benke
Siren Berland
Tatjana Bierhals
Frederic Bilan
Laurence A. Bindoff
Geir Julius Braathen
Øyvind L. Busk
Jirat Chenbhanich
Jonas Denecke
Luis F. Escobar
Caroline Estes
Julie Fleischer
Daniel Groepper
Charlotte A. Haaxma
Maja Hempel
Yolanda Holler-Managan
Gunnar Houge
Adam Jackson
Laura Kellogg
Boris Keren
Catherine Kiraly-Borri
Cornelia Kraus
Christian Kubisch
Gwenael Le Guyader
Ulf W. Ljungblad
Leslie Manace Brenman
Julian A. Martinez-Agosto
Matthew Might
David T. Miller
Kelly Q. Minks
Billur Moghaddam
Caroline Nava
Stanley F. Nelson
John M. Parant
Trine Prescott
Farrah Rajabi
Hanitra Randrianaivo
Simone F. Reiter
Janneke Schuurs-Hoeijmakers
Perry B. Shieh
Anne Slavotinek
Sarah Smithson
Alexander P. A. Stegmann
Kinga Tomczak
Kristian Tveten
Jun Wang
Jordan H. Whitlock
Christiane Zweier
Kirsty McWalter
Jane Juusola
Fabiola Quintero-Rivera
Utz Fischer
Nan Cher Yeo
Hans-Jürgen Kreienkamp
Davor Lessel
Source :
Genome Medicine, Vol 13, Iss 1, Pp 1-19 (2021)
Publication Year :
2021
Publisher :
BMC, 2021.

Abstract

Abstract Background We aimed to define the clinical and variant spectrum and to provide novel molecular insights into the DHX30-associated neurodevelopmental disorder. Methods Clinical and genetic data from affected individuals were collected through Facebook-based family support group, GeneMatcher, and our network of collaborators. We investigated the impact of novel missense variants with respect to ATPase and helicase activity, stress granule (SG) formation, global translation, and their effect on embryonic development in zebrafish. SG formation was additionally analyzed in CRISPR/Cas9-mediated DHX30-deficient HEK293T and zebrafish models, along with in vivo behavioral assays. Results We identified 25 previously unreported individuals, ten of whom carry novel variants, two of which are recurrent, and provide evidence of gonadal mosaicism in one family. All 19 individuals harboring heterozygous missense variants within helicase core motifs (HCMs) have global developmental delay, intellectual disability, severe speech impairment, and gait abnormalities. These variants impair the ATPase and helicase activity of DHX30, trigger SG formation, interfere with global translation, and cause developmental defects in a zebrafish model. Notably, 4 individuals harboring heterozygous variants resulting either in haploinsufficiency or truncated proteins presented with a milder clinical course, similar to an individual harboring a de novo mosaic HCM missense variant. Functionally, we established DHX30 as an ATP-dependent RNA helicase and as an evolutionary conserved factor in SG assembly. Based on the clinical course, the variant location, and type we establish two distinct clinical subtypes. DHX30 loss-of-function variants cause a milder phenotype whereas a severe phenotype is caused by HCM missense variants that, in addition to the loss of ATPase and helicase activity, lead to a detrimental gain-of-function with respect to SG formation. Behavioral characterization of dhx30-deficient zebrafish revealed altered sleep-wake activity and social interaction, partially resembling the human phenotype. Conclusions Our study highlights the usefulness of social media to define novel Mendelian disorders and exemplifies how functional analyses accompanied by clinical and genetic findings can define clinically distinct subtypes for ultra-rare disorders. Such approaches require close interdisciplinary collaboration between families/legal representatives of the affected individuals, clinicians, molecular genetics diagnostic laboratories, and research laboratories.

Subjects

Subjects :
Medicine
Genetics
QH426-470

Details

Language :
English
ISSN :
1756994X
Volume :
13
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Genome Medicine
Publication Type :
Academic Journal
Accession number :
edsdoj.447334b912746929ee920eb4139f48f
Document Type :
article
Full Text :
https://doi.org/10.1186/s13073-021-00900-3