Literature DB >> 24962712

High-throughput transcriptome sequencing identifies candidate genetic modifiers of vulnerability to fetal alcohol spectrum disorders.

Ana Garic1, Mark E Berres, Susan M Smith.   

Abstract

BACKGROUND: Fetal alcohol spectrum disorders (FASD) is a leading cause of neurodevelopmental disability. Genetic factors can modify vulnerability to FASD, but these elements are poorly characterized.
METHODS: We performed high-throughput transcriptional profiling to identify gene candidates that could potentially modify vulnerability to ethanol's (EtOH's) neurotoxicity. We interrogated a unique genetic resource, neuroprogenitor cells from 2 closely related Gallus gallus lines having well-characterized robust or attenuated EtOH responses with respect to intracellular calcium mobilization and CaMKII/β-catenin-dependent apoptosis. Samples were not exposed to EtOH prior to analysis.
RESULTS: We identified 363 differentially expressed genes in neuroprogenitors from these 2 lines. Kyoto Encyclopedia of Genes and Genomes analysis revealed several gene clusters having significantly differential enrichment in gene expression. The largest and most significant cluster comprised ribosomal proteins (38 genes, p = 1.85 × 10(-47) ). Other significantly enriched gene clusters included metabolism (25 genes, p = 0.0098), oxidative phosphorylation (18 genes, p = 1.10 × 10(-11) ), spliceosome (13 genes, p = 7.02 × 10(-8) ), and protein processing in the endoplasmic reticulum (9 genes, p = 0.0011). Inspection of gene ontogeny (GO) terms identified 24 genes involved in the calcium/β-catenin signals that mediate EtOH's neurotoxicity in this model, including β-catenin itself and both calmodulin isoforms.
CONCLUSIONS: Four of the identified pathways with altered transcript abundance mediate the flow of cellular information from RNA to protein. Importantly, ribosome biogenesis also senses nucleolar stress and regulates p53-mediated apoptosis in neural crest. Human ribosomopathies produce craniofacial malformations and 11 known ribosomopathy genes were differentially expressed in this model of neural crest apoptosis. Rapid changes in ribosome expression are consistently observed in EtOH-treated mouse embryo neural folds, a model that is developmentally similar to ours. The recurring identification of ribosome biogenesis suggests it is a candidate modifier of EtOH vulnerability. These results highlight this approach's efficacy to formulate new, mechanistic hypotheses regarding EtOH's developmental damage.
Copyright © 2014 by the Research Society on Alcoholism.

Entities:  

Keywords:  Apoptosis; Diamond-Blackfan Anemia; Fetal Alcohol Spectrum Disorders; Gallus gallus; Neural Crest; Oxidative Phosphorylation; Ribosome Biogenesis; Transcriptome Profiling

Mesh:

Substances:

Year:  2014        PMID: 24962712      PMCID: PMC4149215          DOI: 10.1111/acer.12457

Source DB:  PubMed          Journal:  Alcohol Clin Exp Res        ISSN: 0145-6008            Impact factor:   3.455


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Authors:  M Kanehisa; S Goto
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4.  Differential sensitivity of mouse neural crest cells to ethanol-induced toxicity.

Authors:  S Y Chen; A Periasamy; B Yang; B Herman; K Jacobson; K K Sulik
Journal:  Alcohol       Date:  2000-01       Impact factor: 2.405

5.  Selective vulnerability of embryonic cell populations to ethanol-induced apoptosis: implications for alcohol-related birth defects and neurodevelopmental disorder.

Authors:  W C Dunty; S Y Chen; R M Zucker; D B Dehart; K K Sulik
Journal:  Alcohol Clin Exp Res       Date:  2001-10       Impact factor: 3.455

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Journal:  Birth Defects Res A Clin Mol Teratol       Date:  2005-04

7.  Alcohol dehydrogenase-2*3 allele protects against alcohol-related birth defects among African Americans.

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Authors:  Gary R Leonardson; Roland Loudenburg
Journal:  Neurotoxicol Teratol       Date:  2003 Nov-Dec       Impact factor: 3.763

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  16 in total

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Review 3.  Zebrafish models of fetal alcohol spectrum disorders.

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5.  Role of Cytochrome P450 Hydroxylase in the Decreased Accumulation of Vitamin E in Muscle from Turkeys Compared to that from Chickens.

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Review 6.  The Genetics of Fetal Alcohol Spectrum Disorders.

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Review 7.  Neural crest development in fetal alcohol syndrome.

Authors:  Susan M Smith; Ana Garic; George R Flentke; Mark E Berres
Journal:  Birth Defects Res C Embryo Today       Date:  2014-09-15

Review 8.  The avian embryo as a model for fetal alcohol spectrum disorder.

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9.  Cell-type and fetal-sex-specific targets of prenatal alcohol exposure in developing mouse cerebral cortex.

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