An NMDA receptor-dependent mechanism for subcellular segregation of sensory inputs in the tadpole optic tectum

Author:

Hamodi Ali S1,Liu Zhenyu1,Pratt Kara G1ORCID

Affiliation:

1. Department of Zoology and Physiology and Program in Neuroscience, University of Wyoming, Laramie, United States

Abstract

In the vertebrate CNS, afferent sensory inputs are targeted to specific depths or layers of their target neuropil. This patterning exists ab initio, from the very beginning, and therefore has been considered an activity-independent process. However, here we report that, during circuit development, the subcellular segregation of the visual and mechanosensory inputs to specific regions of tectal neuron dendrites in the tadpole optic tectum requires NMDA receptor activity. Blocking NMDARs during the formation of these sensory circuits, or removing the visual set of inputs, leads to less defined segregation, and suggests a correlation-based mechanism in which correlated inputs wire to common regions of dendrites. This can account for how two sets of inputs form synapses onto different regions of the same dendrite. Blocking NMDA receptors during later stages of circuit development did not disrupt segregation, indicating a critical period for activity-dependent shaping of patterns of innervation.

Funder

Office of Experimental Program to Stimulate Competitive Research

National Institute of General Medical Sciences

Publisher

eLife Sciences Publications, Ltd

Subject

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

Reference66 articles.

1. Quantitative analysis of optic terminal profile distribution within the pigeon optic tectum;Acheson;Neuroscience,1980

2. Synaptic laminae in the visual system: molecular mechanisms forming layers of perception;Baier;Annual Review of Cell and Developmental Biology,2013

3. Subcellular topography of visually driven dendritic activity in the vertebrate visual system;Bollmann;Neuron,2009

4. Developmental mechanisms of topographic map formation and alignment;Cang;Annual Review of Neuroscience,2013

5. Organization of the cat's lateral geniculate nucleus following interruption of prenatal binocular competition;Chalupa;Human Neurobiology,1984

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