Cellular composition and circuit organization of the locus coeruleus of adult mice

Author:

McKinney Andrew123,Hu Ming23,Hoskins Amber4,Mohammadyar Arian4,Naeem Nabeeha4,Jing Junzhan23ORCID,Patel Saumil S2,Sheth Bhavin R56,Jiang Xiaolong1237ORCID

Affiliation:

1. Neuroscience Graduate Program, Baylor College of Medicine

2. Department of Neuroscience, Baylor College of Medicine

3. Jan and Dan Duncan Neurological Research Institute at Texas Children’s Hospital

4. University of Houston

5. Department of Electrical and Computer Engineering, University of Houston

6. Center for NeuroEngineering and Cognitive Science, University of Houston

7. Department of Ophthalmology, Baylor College of Medicine

Abstract

The locus coeruleus (LC) houses the vast majority of noradrenergic neurons in the brain and regulates many fundamental functions, including fight and flight response, attention control, and sleep/wake cycles. While efferent projections of the LC have been extensively investigated, little is known about its local circuit organization. Here, we performed large-scale multipatch recordings of noradrenergic neurons in adult mouse LC to profile their morpho-electric properties while simultaneously examining their interactions. LC noradrenergic neurons are diverse and could be classified into two major morpho-electric types. While fast excitatory synaptic transmission among LC noradrenergic neurons was not observed in our preparation, these mature LC neurons connected via gap junction at a rate similar to their early developmental stage and comparable to other brain regions. Most electrical connections form between dendrites and are restricted to narrowly spaced pairs or small clusters of neurons of the same type. In addition, more than two electrically coupled cell pairs were often identified across a cohort of neurons from individual multicell recording sets that followed a chain-like organizational pattern. The assembly of LC noradrenergic neurons thus follows a spatial and cell-type-specific wiring principle that may be imposed by a unique chain-like rule.

Funder

Eunice Kennedy Shriver National Institute of Child Health and Human Development

National Eye Institute

National Institute of Mental Health

National Institute of Neurological Disorders and Stroke

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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