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Nat Neurosci ; 23(4): 533-543, 2020 04.
Article in English | MEDLINE | ID: mdl-32203497

ABSTRACT

Learning disabilities are hallmarks of congenital conditions caused by prenatal exposure to harmful agents. These include fetal alcohol spectrum disorders (FASDs) with a wide range of cognitive deficiencies, including impaired motor skill development. Although these effects have been well characterized, the molecular effects that bring about these behavioral consequences remain to be determined. We previously found that the acute molecular responses to alcohol in the embryonic brain are stochastic, varying among neural progenitor cells. However, the pathophysiological consequences stemming from these heterogeneous responses remain unknown. Here we show that acute responses to alcohol in progenitor cells altered gene expression in their descendant neurons. Among the altered genes, an increase of the calcium-activated potassium channel Kcnn2 in the motor cortex correlated with motor learning deficits in a mouse model of FASD. Pharmacologic blockade of Kcnn2 improves these learning deficits, suggesting Kcnn2 blockers as a new intervention for learning disabilities in FASD.


Subject(s)
Behavior, Animal/drug effects , Fetal Alcohol Spectrum Disorders/drug therapy , Learning Disabilities/drug therapy , Learning/drug effects , Motor Cortex/drug effects , Scorpion Venoms/pharmacology , Small-Conductance Calcium-Activated Potassium Channels/antagonists & inhibitors , Animals , Cell Shape/drug effects , Dendrites/drug effects , Dendrites/metabolism , Disease Models, Animal , Learning Disabilities/metabolism , Mice , Motor Activity/drug effects , Motor Cortex/metabolism , Neurons/drug effects , Neurons/metabolism , Scorpion Venoms/therapeutic use , Small-Conductance Calcium-Activated Potassium Channels/metabolism
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