Behavioural and neurodevelopmental characteristics of SYNGAP1

Author:

Bednarczuk Nadja1ORCID,Housby Harriet1,Lee Irene1,Consortium IMAGINE1,Skuse David1,Wolstencroft Jeanne1ORCID

Affiliation:

1. University College London Great Ormond Street Institute of Child Health

Abstract

Abstract Background SYNGAP1 variants are associated with varying degrees of intellectual disability (ID), developmental delay (DD), epilepsy, autism, and behavioural difficulties. These features may also be observed in other monogenic conditions. There is a need to systematically compare the characteristics of SYNGAP1 with other monogenic causes of ID and DD to identify features unique to the SYNAGP1 phenotype. We aimed to contrast the neurodevelopmental and behavioural phenotype of children with SYNGAP1-related ID (SYNGAP1-ID) to children with other monogenic conditions and a matched degree of ID. Methods Participants were identified from the IMAGINE-ID study, a UK-based, national cohort study of neuropsychiatric risk in children with ID of known genetic origin. Thirteen children with SYNGAP1 variants (age 4–16 years; 85% female) were matched (2:1) with 26 controls with other monogenic causes of ID for chronological and mental age, sex, socio-economic deprivation, adaptive behaviour, and physical health difficulties. Caregivers completed the Development and Wellbeing Assessment (DAWBA) and a physical health questionnaire. Results Our results demonstrate that seizures affected children with SYNGAP1-ID (84.6%) more frequently than the ID-comparison group (7.6%; p = < 0.001). Fine-motor development was disproportionally impaired in SYNGAP1-ID, with 92.3% of children experiencing difficulties compared to 50% of ID-comparisons (p = 0.03). Gross motor and social development did not differ between the two groups. Children with SYNGAP1-ID were more likely to be non-verbal (61.5%) than ID-comparisons (23.1%; p = 0.01). Those children able to speak, spoke their first words at the same age as the ID-comparison group (mean = 3.25 years), yet achieved lower language competency (p = 0.04). Children with SYNGAP1-ID compared to the ID-comparison group were not more likely to meet criteria for autism (SYNGAP1-ID = 46.2%; ID-comparison = 30.7%; p = .35), attention-deficit hyperactivity disorder (15.4%;15.4%; p = 1), generalised anxiety (7.7%;15.4%; p = .49) or oppositional defiant disorder (7.7%;0%; p = .15). Conclusion For the first time, we demonstrate that SYNGAP1-ID is associated with fine motor and language difficulties beyond those experienced by children with other genetic causes of DD and ID. Targeted occupational and speech and language therapies should be incorporated early into SYNGAP1-ID management.

Publisher

Research Square Platform LLC

Reference35 articles.

1. Fitzgerald TW, Gerety SS, Jones WD, Van Kogelenberg M, King DA, McRae J et al. Large-scale discovery of novel genetic causes of developmental disorders. Nature [Internet]. 2015 [cited 2023 Mar 29];519:223–8. Available from: https://pubmed.ncbi.nlm.nih.gov/25533962/.

2. Kim JH, Liao D, Lau LF, Huganir RL. SynGAP: a synaptic RasGAP that associates with the PSD-95/SAP90 protein family. Neuron [Internet]. 1998 [cited 2023 Sep 4];20:683–91. Available from: https://pubmed.ncbi.nlm.nih.gov/9581761/.

3. Gamache TR, Araki Y, Huganir RL. Twenty Years of SynGAP Research: From Synapses to Cognition. J Neurosci [Internet]. 2020 [cited 2023 Aug 30];40:1596–605. Available from: https://www.jneurosci.org/content/40/8/1596.

4. Llamosas N, Arora V, Vij R, Kilinc M, Bijoch L, Rojas C et al. SYNGAP1 Controls the Maturation of Dendrites, Synaptic Function, and Network Activity in Developing Human Neurons. J Neurosci [Internet]. 2020 [cited 2023 Sep 4];40:7980. Available from: /pmc/articles/PMC7548701/.

5. Aceti M, Creson TK, Vaissiere T, Rojas C, Huang WC, Wang YX et al. Syngap1 haploinsufficiency damages a postnatal critical period of pyramidal cell structural maturation linked to cortical circuit assembly. Biol Psychiatry [Internet]. 2015 [cited 2023 Sep 4];77:805–15. Available from: https://pubmed.ncbi.nlm.nih.gov/25444158/.

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