Genome-wide gene by lead exposure interaction analysis identifies UNC5D as a candidate gene for neurodevelopment
Zhaoxi Wang1, Birgit Claus Henn2, Chaolong Wang3
1Harvard TH Chan School of Public Health, Boston, MA, USA.
Insights
Genetic susceptibility influences lead
Area of Science:
- Environmental toxicology
- Neuroscience
- Genetics
Background:
- Neurodevelopment is influenced by genetic and environmental factors.
- Prenatal lead (Pb) exposure is linked to poorer neurodevelopmental outcomes.
- Gene-environment interactions can worsen adverse effects of toxic exposures.
Purpose of the Study:
- Identify genetic loci associated with susceptibility to prenatal lead exposure.
- Investigate gene-environment interactions in neurodevelopment.
- Explore the role of genetic factors in lead's neurotoxic effects.
Main Methods:
- Conducted a genome-wide gene-environment interaction study (GWIS) in children from Mexico and Bangladesh.
- Assessed prenatal lead exposure via cord blood lead levels.
- Measured neurodevelopment using the Bayley Scales of Infant Development.
Main Results:
- Identified a significant locus on chromosome 8 near UNC5D associated with cognitive scores (p meta = 4.35 × 10-6).
- Found joint effects of two SNPs (rs9642758, rs10503970) significantly impacting mental scores (p = 4.38 × 10-9).
- Linked GWIS findings to SLC1A5, a gene involved in synaptic function, and identified a 52-gene network enriched for oxidative stress and neurodevelopmental genes.
Conclusions:
- Genetic polymorphisms may modify lead's neurotoxic effects.
- Oxidative stress pathways are implicated in lead's impact on neurodevelopment.
- Specific genes and networks are associated with increased susceptibility to prenatal lead exposure.
Background:
Neurodevelopment is a complex process involving both genetic and environmental factors. Prenatal exposure to lead (Pb) has been associated with lower performance on neurodevelopmental tests. Adverse neurodevelopmental outcomes are more frequent and/or more severe when toxic exposures interact with genetic susceptibility.
Methods:
To explore possible loci associated with increased susceptibility to prenatal Pb exposure, we performed a genome-wide gene-environment interaction study (GWIS) in young children from Mexico (n = 390) and Bangladesh (n = 497). Prenatal Pb exposure was estimated by cord blood Pb concentration. Neurodevelopment was assessed using the Bayley Scales of Infant Development.
Results:
We identified a locus on chromosome 8, containing UNC5D, and demonstrated evidence of its genome-wide significance with mental composite scores (rs9642758, p meta = 4.35 × 10-6). Within this locus, the joint effects of two independent single nucleotide polymorphisms (SNPs, rs9642758 and rs10503970) had a p-value of 4.38 × 10-9 for mental composite scores. Correlating GWIS results with in vitro transcriptomic profiles identified one common gene, SLC1A5, which is involved in synaptic function, neuronal development, and excitotoxicity. Further analysis revealed interconnected interactions that formed a large network of 52 genes enriched with oxidative stress genes and neurodevelopmental genes.
Conclusions:
Our findings suggest that certain genetic polymorphisms within/near genes relevant to neurodevelopment might modify the toxic effects of Pb exposure via oxidative stress.
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