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Neuronal knockdown of Cullin3 as a Drosophila model of autism spectrum disorder
by
Oraedu, Kairaluchi
, Ja, William W.
, Stavropoulos, Nicholas
, Park, Scarlet J.
, Pantalia, Meghan
, Martínez-Muñiz, Andrés
, Volpi, Julia
, Gatto, Jared A.
, Lin, Zhi
, Van Beek, Emily
, Tener, Samantha J.
, Canman, Julie C.
, Ulgherait, Matthew
, Shirasu-Hiza, Mimi
in
631/208/1515
/ 631/208/366/1373
/ Animals
/ Autism
/ Autism Spectrum Disorder - genetics
/ Courtship
/ Cullin
/ Cullin Proteins - genetics
/ Cullin Proteins - metabolism
/ Drosophila
/ Drosophila - genetics
/ Drosophila Proteins - genetics
/ Drosophila Proteins - metabolism
/ Homeostasis
/ Humanities and Social Sciences
/ Hyperoxia
/ Insects
/ Metabolism
/ multidisciplinary
/ Mushroom bodies
/ Neurons - metabolism
/ Oxidative stress
/ Phenotypes
/ Science
/ Science (multidisciplinary)
/ Sleep
/ Social behavior
/ Social discrimination learning
/ Social interactions
/ Ubiquitin-protein ligase
2024
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Neuronal knockdown of Cullin3 as a Drosophila model of autism spectrum disorder
by
Oraedu, Kairaluchi
, Ja, William W.
, Stavropoulos, Nicholas
, Park, Scarlet J.
, Pantalia, Meghan
, Martínez-Muñiz, Andrés
, Volpi, Julia
, Gatto, Jared A.
, Lin, Zhi
, Van Beek, Emily
, Tener, Samantha J.
, Canman, Julie C.
, Ulgherait, Matthew
, Shirasu-Hiza, Mimi
in
631/208/1515
/ 631/208/366/1373
/ Animals
/ Autism
/ Autism Spectrum Disorder - genetics
/ Courtship
/ Cullin
/ Cullin Proteins - genetics
/ Cullin Proteins - metabolism
/ Drosophila
/ Drosophila - genetics
/ Drosophila Proteins - genetics
/ Drosophila Proteins - metabolism
/ Homeostasis
/ Humanities and Social Sciences
/ Hyperoxia
/ Insects
/ Metabolism
/ multidisciplinary
/ Mushroom bodies
/ Neurons - metabolism
/ Oxidative stress
/ Phenotypes
/ Science
/ Science (multidisciplinary)
/ Sleep
/ Social behavior
/ Social discrimination learning
/ Social interactions
/ Ubiquitin-protein ligase
2024
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Do you wish to request the book?
Neuronal knockdown of Cullin3 as a Drosophila model of autism spectrum disorder
by
Oraedu, Kairaluchi
, Ja, William W.
, Stavropoulos, Nicholas
, Park, Scarlet J.
, Pantalia, Meghan
, Martínez-Muñiz, Andrés
, Volpi, Julia
, Gatto, Jared A.
, Lin, Zhi
, Van Beek, Emily
, Tener, Samantha J.
, Canman, Julie C.
, Ulgherait, Matthew
, Shirasu-Hiza, Mimi
in
631/208/1515
/ 631/208/366/1373
/ Animals
/ Autism
/ Autism Spectrum Disorder - genetics
/ Courtship
/ Cullin
/ Cullin Proteins - genetics
/ Cullin Proteins - metabolism
/ Drosophila
/ Drosophila - genetics
/ Drosophila Proteins - genetics
/ Drosophila Proteins - metabolism
/ Homeostasis
/ Humanities and Social Sciences
/ Hyperoxia
/ Insects
/ Metabolism
/ multidisciplinary
/ Mushroom bodies
/ Neurons - metabolism
/ Oxidative stress
/ Phenotypes
/ Science
/ Science (multidisciplinary)
/ Sleep
/ Social behavior
/ Social discrimination learning
/ Social interactions
/ Ubiquitin-protein ligase
2024
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Neuronal knockdown of Cullin3 as a Drosophila model of autism spectrum disorder
Journal Article
Neuronal knockdown of Cullin3 as a Drosophila model of autism spectrum disorder
2024
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Overview
Mutations in
Cullin-3
(
Cul3
), a conserved gene encoding a ubiquitin ligase, are strongly associated with autism spectrum disorder (ASD). Here, we characterize ASD-related pathologies caused by neuron-specific
Cul3
knockdown in
Drosophila
. We confirmed that neuronal
Cul3
knockdown causes short sleep, paralleling sleep disturbances in ASD. Because sleep defects and ASD are linked to metabolic dysregulation, we tested the starvation response of neuronal
Cul3
knockdown flies; they starved faster and had lower triacylglyceride levels than controls, suggesting defects in metabolic homeostasis. ASD is also characterized by increased biomarkers of oxidative stress; we found that neuronal
Cul3
knockdown increased sensitivity to hyperoxia, an exogenous oxidative stress. Additional hallmarks of ASD are deficits in social interactions and learning. Using a courtship suppression assay that measures social interactions and memory of prior courtship, we found that neuronal
Cul3
knockdown reduced courtship and learning compared to controls. Finally, we found that neuronal
Cul3
depletion alters the anatomy of the mushroom body, a brain region required for memory and sleep. Taken together, the ASD-related phenotypes of neuronal
Cul3
knockdown flies establish these flies as a genetic model to study molecular and cellular mechanisms underlying ASD pathology, including metabolic and oxidative stress dysregulation and neurodevelopment.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
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