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- W2008291566 abstract "The three-dimensional structure and membrane specializations of the moth fast excitatory neuromuscular junction are qualitatively similar to those in fast vertebrate muscles. Both types of neuromuscular junction have linear, repeating presynaptic active zones, each of which lies over an aggregate of membrane particles on a process or fold of the muscle. The aggregates are congruent with the presumed sites of the postsynaptic receptors. Glial processes alternate with the muscle processes and curve around the nerve between the active zones. However, this presumed glutamate junction and the cholinergic neuromuscular junctions of vertebrates differ in two major ways. In the moth, there is an elaborate interdigitation of muscle and glial processes which is lacking in vertebrate synapses. Further, in the postsynaptic membrane of the moth the intramembrouns particles cleave with the external membrane leaflet instead of with the inner one. This latter difference, in conjunction with the particle distributions observed at other types of chemical synapse, is consistent with the hypothesis that there are morphological characteristics in membrane structure that reflect specific types of receptor-ion channel complexes." @default.
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- W2008291566 title "Three-dimensional structure and membrane specializations of moth excitatory neuromuscular synapse" @default.
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- W2008291566 doi "https://doi.org/10.1016/s0022-5320(78)90048-5" @default.
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