Javascript must be enabled to continue!
Protocadherin-αC2 is required for diffuse projections of serotonergic axons
View through CrossRef
AbstractSerotonergic axons extend diffuse projections throughout various brain areas, and serotonergic system disruption causes neuropsychiatric diseases. Loss of the cytoplasmic region of protocadherin-α (Pcdh-α) family proteins, products of the diverse clustered Pcdh genes, causes unbalanced distributions (densification and sparsification) of serotonergic axons in various target regions. However, which Pcdh-α member(s) are responsible for the phenotype is unknown. Here we demonstrated that Pcdh-αC2 (αC2), a Pcdh-α isoform, was highly expressed in serotonergic neurons, and was required for normal diffusion in single-axon-level analyses of serotonergic axons. The loss of αC2 from serotonergic neurons, but not from their target brain regions, led to unbalanced distributions of serotonergic axons. Our results suggest that αC2 expressed in serotonergic neurons is required for serotonergic axon diffusion in various brain areas. The αC2 extracellular domain displays homophilic binding activity, suggesting that its homophilic interaction between serotonergic axons regulates axonal density via αC2′s cytoplasmic domain.
Springer Science and Business Media LLC
Title: Protocadherin-αC2 is required for diffuse projections of serotonergic axons
Description:
AbstractSerotonergic axons extend diffuse projections throughout various brain areas, and serotonergic system disruption causes neuropsychiatric diseases.
Loss of the cytoplasmic region of protocadherin-α (Pcdh-α) family proteins, products of the diverse clustered Pcdh genes, causes unbalanced distributions (densification and sparsification) of serotonergic axons in various target regions.
However, which Pcdh-α member(s) are responsible for the phenotype is unknown.
Here we demonstrated that Pcdh-αC2 (αC2), a Pcdh-α isoform, was highly expressed in serotonergic neurons, and was required for normal diffusion in single-axon-level analyses of serotonergic axons.
The loss of αC2 from serotonergic neurons, but not from their target brain regions, led to unbalanced distributions of serotonergic axons.
Our results suggest that αC2 expressed in serotonergic neurons is required for serotonergic axon diffusion in various brain areas.
The αC2 extracellular domain displays homophilic binding activity, suggesting that its homophilic interaction between serotonergic axons regulates axonal density via αC2′s cytoplasmic domain.
Related Results
Live Holotomography of Growing Serotonergic Axons
Live Holotomography of Growing Serotonergic Axons
ABSTRACT
The developmental buildup and maintenance of serotonergic axon meshworks in the brain depends on the dynamics of individual serotonergic...
Growth behavior of retinotectal axons in live zebrafish embryos under TTX‐induced neural impulse blockade
Growth behavior of retinotectal axons in live zebrafish embryos under TTX‐induced neural impulse blockade
AbstractThe growth dynamics of individual DiO‐labeled retinal axons deprived of normal neural impulse activity by TTXZ was monitored in the tectum of living zebrafish embryos with ...
Nidogen/NID-1 guides regenerating motor axons in the mature nervous system
Nidogen/NID-1 guides regenerating motor axons in the mature nervous system
Abstract
Restoring function to injured axons requires not only regeneration, but also accurate guidance and synapse reformation. Our understandin...
Semaphorin 7A restricts serotonergic innervation and ensures recovery after spinal cord injury
Semaphorin 7A restricts serotonergic innervation and ensures recovery after spinal cord injury
AbstractDescending serotonergic (5-HT) projections originating from the raphe nuclei form an important input to the spinal cord that control basic locomotion. The molecular signals...
Innervation of avian latissimus dorsi muscles and axonal outgrowth pattern in the posterior latissimus dorsi motor nerve during embryonic development
Innervation of avian latissimus dorsi muscles and axonal outgrowth pattern in the posterior latissimus dorsi motor nerve during embryonic development
AbstractThe distribution of the innervation to the anterior latissimus dorsi (ALD) and posterior latissimus dorsi (PLD) muscles of the chicken are described on the day of hatching ...
Clinical and pathological features affecting cardiac sympathetic denervation in autopsy‐confirmed dementia with Lewy bodies
Clinical and pathological features affecting cardiac sympathetic denervation in autopsy‐confirmed dementia with Lewy bodies
Background and purposeThe aim was to clarify the features affecting cardiac sympathetic denervation in autopsy‐confirmed dementia with Lewy bodies (DLB) patients.MethodsFifty‐four ...
Dopamine transporter immunoreactivity in monkey cerebral cortex: Regional, laminar, and ultrastructural localization
Dopamine transporter immunoreactivity in monkey cerebral cortex: Regional, laminar, and ultrastructural localization
Abstract
Dopamine (DA) influences a number of cognitive and motor functions that are mediated by the primate cerebral cortex, and the DA membrane transporter (DAT...
Nonlinear relationship between multimodal adrenergic responses and local dendritic activity in primary sensory cortices
Nonlinear relationship between multimodal adrenergic responses and local dendritic activity in primary sensory cortices
Abstract
The axonal projections of the adrenergic system to the neocortex, originating from the locus coeruleus (LC), form a dense network. These...

