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The Journal of Neuroscience, March 1, 2002, 22(5):1831-1839
Synapse Formation in the Absence of Cell Bodies Requires
Protein Synthesis
Samuel
Schacher and
Fang
Wu
Center for Neurobiology and Behavior, Columbia University College
of Physicians and Surgeons and New York State Psychiatric Institute,
New York, New York 10032
Protein synthesis at distal synaptic sites is thought to play a
critical role in long-term synaptic plasticity at preexisting connections. We tested whether protein synthesis in distal neuritic processes contributes to the formation of new synaptic connections by
Aplysia neurons regenerating in cell culture after
removing their cell bodies. Removal of either the sensory neuron (SN)
or motor cell L7 cell body did not affect the formation of synaptic connections during the next 48-72 hr period. Increases in synaptic efficacy after removal of the SN cell body was accompanied by neurite
growth and an increase in the number of SN varicosities contacting L7.
The increases in synaptic efficacy and the number of SN varicosities
were blocked by anisomycin, a protein synthesis inhibitor. The initial
formation of synaptic connections was not affected by the absence of
the L7 cell body. In the absence of cell bodies from both presynaptic
and postsynaptic cells, synaptic efficacy increased for 48 hr and was
blocked reversibly by anisomycin. These results support the idea that
distal neuritic processes contain stable mRNAs and the macromolecular
machinery for protein synthesis that are required for the formation of
new synaptic connections.
Key words:
synapse formation; axon growth; local protein synthesis; neuritic mRNA; Aplysia; cell culture
Copyright © 2002 Society for Neuroscience 0270-6474/02/2251831-09$05.00/0
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