Deep postnatal phenotyping of a new mouse model of nonketotic hyperglycinemia

Author:

Swanson Michael A.1ORCID,Jiang Hua1ORCID,Busquet Nicolas23ORCID,Carlsen Jessica2ORCID,Brindley Connie2ORCID,Benke Tim A.4ORCID,Van Hove Roxanne A.1ORCID,Friederich Marisa W.1ORCID,MacLean Kenneth N.1ORCID,Mesches Michael H.24ORCID,Van Hove Johan L. K.1ORCID

Affiliation:

1. Department of Pediatrics, Section of Clinical Genetics and Metabolism University of Colorado Anschutz Medical Campus Aurora Colorado USA

2. NeuroTechnology Center, School of Medicine University of Colorado Anschutz Medical Campus Aurora Colorado USA

3. Department of Neurology University of Colorado Anschutz Medical Campus Aurora Colorado USA

4. Department of Pediatrics, Section of Pediatric Neurology University of Colorado Anschutz Medical Campus Aurora Colorado USA

Abstract

AbstractNonketotic hyperglycinemia due to deficient glycine cleavage enzyme activity causes a severe neonatal epileptic encephalopathy. Current therapies based on mitigating glycine excess have only limited impact. An animal model with postnatal phenotyping is needed to explore new therapeutic approaches. We developed a Gldc p.Ala394Val mutant model and bred it to congenic status in two colonies on C57Bl/6J (B6) and J129X1/SvJ (J129) backgrounds. Mutant mice had reduced P‐protein and enzyme activity indicating a hypomorphic mutant. Glycine levels were increased in blood and brain regions, exacerbated by dietary glycine, with higher levels in female than male J129 mice. Birth defects were more prevalent in mutant B6 than J129 mice, and hydrocephalus was more frequent in B6 (40%) compared to J129 (none). The hydrocephalus rate was increased by postnatal glycine challenge in B6 mice, more so when delivered from the first neonatal week than from the fourth. Mutant mice had reduced weight gain following weaning until the eighth postnatal week, which was exacerbated by glycine loading. The electrographic spike rate was increased in mutant mice following glycine loading, but no seizures were observed. The alpha/delta band intensity ratio was decreased in the left cortex in female J129 mice, which were less active in an open field test and explored less in a Y‐maze, suggesting an encephalopathic effect. Mutant mice showed no evidence of memory dysfunction. This partial recapitulation of human symptoms and biochemistry will facilitate the evaluation of new therapeutic approaches with an early postnatal time window likely most effective.

Funder

University of Colorado School of Medicine, Anschutz Medical Campus

National Center for Advancing Translational Sciences

Publisher

Wiley

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