Maternal genetics influences fetal neurodevelopment and postnatal autism spectrum disorder-like phenotype by
Ritika Jaini1,2, Matthew R Wolf1, Qi Yu1
1Genomic Medicine Institute, Lerner Research Institute, Cleveland Clinic, Cleveland, OH, 44195, USA.
Insights
Maternal genetics alone can influence fetal neurodevelopment and autism spectrum disorder (ASD) risk. A specific mouse model showed that altered maternal immune regulation impacts offspring neurodevelopment and behavior.
Area of Science:
- Neuroscience
- Genetics
- Immunology
Background:
- Autism spectrum disorder (ASD) research often overlooks parental genetic roles in fetal neurodevelopment.
- Maternal inflammation during pregnancy is a known risk factor for ASD, but the impact of maternal genetics itself is unclear.
Purpose of the Study:
- To investigate the direct impact of maternal genetics on in-utero inflammation and fetal neurodevelopment.
- To determine if maternal genetic factors alone can influence autism spectrum disorder (ASD)-like phenotypes in offspring.
Main Methods:
- Utilized the PtenWT/m3m4 mouse model to study maternal genetic effects on ASD-like phenotypes.
- Analyzed inflammatory markers, gene expression, and cellular phenotypes in mothers, fetuses, and placentas.
- Assessed postnatal behavior and mortality in offspring from mothers with different genotypes.
Main Results:
- Mothers with the PtenWT/m3m4 genotype exhibited inadequate Interleukin-10 (IL-10) mediated immunosuppression during pregnancy.
- Low maternal IL-10 correlated with decreased fetal liver complement expression, increased blood-brain-barrier breakdown, neuronal loss, and impaired glial maturation.
- Offspring displayed increased mortality, macrocephaly, and ASD-like behaviors, with altered phenotypic penetrance based on maternal genotype.
Conclusions:
- Maternal genetics can independently modulate fetal neurodevelopment and ASD-related phenotypes.
- Altered materno-fetal immunosuppression, specifically via IL-10 pathways, is a key mechanism.
- This highlights the critical role of maternal genetic contributions to neurodevelopmental outcomes.
Abstract:
Genetic studies in ASD have mostly focused on the proband, with no clear understanding of parental genetic contributions to fetal neurodevelopment. Among parental etiological factors, perinatal maternal inflammation secondary to autoimmunity, infections, and toxins is associated with ASD. However, the inherent impact of maternal genetics on in-utero inflammation and fetal neurodevelopment in the absence of strong external inflammatory exposures is not known. We used the PtenWT/m3m4 mouse model for ASD to demonstrate the impact of maternal genetics on the penetrance of ASD-like phenotypes in the offspring. PtenWT/m3m4 (Momm3m4) or PtenWT/WT (MomWT) females, their offspring, and placental interface were analyzed for inflammatory markers, gene expression, and cellular phenotypes at E17.5. Postnatal behavior was tested by comparing pups from Momm3m4 vs. MomWT. Mothers of the PtenWT/m3m4 genotype (Momm3m4) showed inadequate induction of IL-10 mediated immunosuppression during pregnancy. Low IL-10 in the mother was directly correlated with decreased complement expression in the fetal liver. Fetuses from Momm3m4 had increased breakdown of the blood-brain-barrier, neuronal loss, and lack of glial cell maturation during in-utero stages. This impact of maternal genotype translated to a postnatal increase in the risk of newborn mortality, visible macrocephaly and ASD-like repetitive and social behaviors. Depending on maternal genotype, non-predisposed (wildtype) offspring showed ASD-like phenotypes, and phenotypic penetrance was decreased in predisposed pups from MomWT. Our study introduces the concept that maternal genetics alone, without any added external inflammatory insults, can modulate fetal neurodevelopment and ASD-related phenotypes in the offspring via alteration of IL-10 mediated materno-fetal immunosuppression.
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