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CACNA1C: Association With Psychiatric Disorders, Behavior, and Neurogenesis
by
Haan, Niels
, Hall, Jeremy
, Thomas, Kerrie L
, Wilkinson, Lawrence S
, Moon, Anna L
in
Animals
/ Attention deficit hyperactivity disorder
/ Behavior, Animal - physiology
/ Bipolar disorder
/ Calcium Channels, L-Type - genetics
/ Cognitive Dysfunction
/ Disease Models, Animal
/ Hippocampus - physiology
/ Kinases
/ Mental disorders
/ Mental Disorders - genetics
/ Mental Disorders - physiopathology
/ Neurogenesis - physiology
2018
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CACNA1C: Association With Psychiatric Disorders, Behavior, and Neurogenesis
by
Haan, Niels
, Hall, Jeremy
, Thomas, Kerrie L
, Wilkinson, Lawrence S
, Moon, Anna L
in
Animals
/ Attention deficit hyperactivity disorder
/ Behavior, Animal - physiology
/ Bipolar disorder
/ Calcium Channels, L-Type - genetics
/ Cognitive Dysfunction
/ Disease Models, Animal
/ Hippocampus - physiology
/ Kinases
/ Mental disorders
/ Mental Disorders - genetics
/ Mental Disorders - physiopathology
/ Neurogenesis - physiology
2018
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
CACNA1C: Association With Psychiatric Disorders, Behavior, and Neurogenesis
by
Haan, Niels
, Hall, Jeremy
, Thomas, Kerrie L
, Wilkinson, Lawrence S
, Moon, Anna L
in
Animals
/ Attention deficit hyperactivity disorder
/ Behavior, Animal - physiology
/ Bipolar disorder
/ Calcium Channels, L-Type - genetics
/ Cognitive Dysfunction
/ Disease Models, Animal
/ Hippocampus - physiology
/ Kinases
/ Mental disorders
/ Mental Disorders - genetics
/ Mental Disorders - physiopathology
/ Neurogenesis - physiology
2018
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CACNA1C: Association With Psychiatric Disorders, Behavior, and Neurogenesis
Journal Article
CACNA1C: Association With Psychiatric Disorders, Behavior, and Neurogenesis
2018
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Overview
Abstract
Large-scale genome-wide association studies have consistently shown that genetic variation in CACNA1C, a gene that encodes calcium voltage-gated channel subunit alpha1C, increases risk for psychiatric disorders. CACNA1C encodes the Cav1.2 subunit of voltage-gated calcium channels, which themselves have been functionally implicated in a broad spectrum of neuropsychiatric syndromes. Research has concentrated on uncovering the underlying biological mechanisms that could be responsible for this increased risk. This review presents an overview of recent findings regarding Cacna1c variation in animal models, particularly focusing on behavioral phenotypes associated with neurodevelopmental disorders such as cognition, anxiety and depressive phenotypes, and fear conditioning. The impact of reduced gene dosage of Cacna1c on adult hippocampal neurogenesis is also assessed, including new data from a novel Cacna1c+/− rat model.
Publisher
Oxford University Press
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