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Related Concept Videos

Cholinergic Neurons: Neurotransmission01:23

Cholinergic Neurons: Neurotransmission

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Cholinergic neurotransmission involves the synthesis and the release of acetylcholine (ACh) in order to transmit nerve impulses across the synapse. The process begins with the synthesis of acetyl CoA, a precursor for ACh, from ATP, acetate, and coenzyme A in the mitochondria. Choline, another vital precursor, is transported inside the neuron through choline transporters, including high-affinity choline transporter CHT1, low-affinity choline transporter CTL1, and lower-affinity choline...
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Acetylcholine Neurons Become Cholinergic during Three Time Windows in the Developing Mouse Brain.

Rene Oliver Goral1,2, Patricia W Lamb1, Jerrel L Yakel3

  • 1Neurobiology Laboratory, National Institute of Environmental Health Sciences, National Institutes of Health, Department of Health and Human Services, Research Triangle Park, North Carolina 27709.

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Most acetylcholine (ACh) neurons become cholinergic during three key developmental windows before major sensory development. This reveals a coordinated timeline for cholinergic system maturation in the brain.

Keywords:
brain developmentcholinergic neuronstransgenic micewhole-brain imaging

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Area of Science:

  • Neuroscience
  • Developmental Biology
  • Molecular Neurobiology

Background:

  • Acetylcholine (ACh) neurons are vital for central nervous system functions like attention, learning, memory, and locomotion.
  • Dysfunctional cholinergic signaling is implicated in neurodevelopmental and neurodegenerative disorders.
  • The developmental timeline of cholinergic system maturation remains largely uncharacterized.

Purpose of the Study:

  • To determine when acetylcholine (ACh) neurons acquire their cholinergic identity during brain development.
  • To map the temporal emergence of cholinergic signaling in the developing brain.
  • To understand the coordination between ACh neuron development and brain anatomical structure.

Main Methods:

  • Utilized transgenic mice for selective labeling of acetylcholine (ACh) neurons using tdTomato.
  • Performed whole-brain imaging of serially sectioned brains at various prenatal and postnatal developmental stages.
  • Generated 3D whole-brain reconstructions to analyze developmental timing.

Main Results:

  • Identified three critical developmental windows (two prenatal, one postnatal) for the acquisition of cholinergic identity in most ACh neuron populations.
  • Demonstrated that cholinergic gene expression begins in cortical ACh interneurons.
  • Showed that cholinergic projection neurons from the basal forebrain innervate the cerebral cortex.
  • Established that ACh neuron populations become cholinergic before postnatal day 12, preceding the onset of major sensory processes.

Conclusions:

  • Acetylcholine (ACh) neuron populations are established and become functional before the onset of major sensory development.
  • The birth of ACh neurons and the initiation of cholinergic gene expression are distinct but coordinated developmental events.
  • Brain anatomical structure plays a crucial role in coordinating the temporal development of the cholinergic system.