NMIHBA results from hypomorphic PRUNE1 variants that lack short-chain exopolyphosphatase activity

Author:

Nistala Harikiran1ORCID,Dronzek John1,Gonzaga-Jauregui Claudia1,Chim Shek Man1,Rajamani Saathyaki2,Nuwayhid Samer2,Delgado Dennis2,Burke Elizabeth3,Karaca Ender45,Franklin Matthew C2,Sarangapani Prasad2,Podgorski Michael2,Tang Yajun2,Dominguez Melissa G2,Withers Marjorie4,Deckelbaum Ron A2,Scheonherr Christopher J1,Gahl William A3,Malicdan May C3,Zambrowicz Brian2,Gale Nicholas W2,Gibbs Richard A46,Chung Wendy K7,Lupski James R468,Economides Aris N12

Affiliation:

1. Regeneron Genetics Center, Tarrytown, NY 10591, USA

2. Regeneron Pharmaceuticals, Inc., Tarrytown, NY 10591, USA

3. Undiagnosed Diseases Program Translational Laboratory, NHGRI, National Institutes of Health, Bethesda, MD 20892, USA

4. Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX 77030, USA

5. Department of Genetics, University of Alabama at Birmingham, Birmingham, AL 35294, USA

6. Human Genome Sequencing Center, Baylor College of Medicine, Houston, TX 77030, USA

7. Columbia University Medical Center, New York, NY 10032, USA

8. Texas Children’s Hospital, Houston, TX 77030, USA

Abstract

Abstract Neurodevelopmental disorder with microcephaly, hypotonia and variable brain anomalies (NMIHBA) is an autosomal recessive neurodevelopmental and neurodegenerative disorder characterized by global developmental delay and severe intellectual disability. Microcephaly, progressive cortical atrophy, cerebellar hypoplasia and delayed myelination are neurological hallmarks in affected individuals. NMIHBA is caused by biallelic variants in PRUNE1 encoding prune exopolyphosphatase 1. We provide in-depth clinical description of two affected siblings harboring compound heterozygous variant alleles, c.383G > A (p.Arg128Gln), c.520G > T (p.Gly174*) in PRUNE1. To gain insights into disease biology, we biochemically characterized missense variants within the conserved N-terminal aspartic acid-histidine-histidine (DHH) motif and provide evidence that they result in the destabilization of protein structure and/or loss of exopolyphosphatase activity. Genetic ablation of Prune1 results in midgestational lethality in mice, associated with perturbations to embryonic growth and vascular development. Our findings suggest that NMIHBA results from hypomorphic variant alleles in humans and underscore the potential key role of PRUNE1 exopolyphoshatase activity in neurodevelopment.

Funder

Regeneron Pharmaceuticals, Inc.

National Human Genome Research Institute

National Heart Blood and Lung Institute

National Institutes of Health

Baylor-Hopkins Center for Mendelian Genomics

Publisher

Oxford University Press (OUP)

Subject

Genetics(clinical),Genetics,Molecular Biology,General Medicine

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