Abstract
During growth of identified crayfish muscle fibres from a diameter of 20 to 400 micron, the excitatory junctional potential (e.j.p.) amplitude was found to be independent of diameter. Thus, e.j.p. amplitude was maintained during growth in spite of a 21-fold decrease in miniature excitatory junctional potential (m.e.j.p.) amplitude previously reported (Lnenicka & Mellon, 1983). The maintenance of e.j.p. amplitude was found to be partially due to a 5-fold increase in quantal release at 'active sites' during growth. In order to determine whether the increase in transmitter release can be regulated by the rate of muscle fibre growth, the rate of growth was experimentally reduced. By decreasing the resting length of the muscle during growth, the rate of increase in the diameter was reduced by approximately 50% compared with the contralateral control muscle fibres. The input resistance and the m.e.j.p. were appropriately larger in the smaller-diameter experimental fibres. However, e.j.p. amplitude in the experimental fibres was not significantly different from that in the contralateral control fibres. This was apparently due to the significantly smaller quantal release at active sites on the experimental fibres compared with control fibres. Thus, experimental alteration of the rate of muscle fibre growth results in regulation of transmitter release, suggesting that the muscle fibre may control the increase in transmitter release seen during normal growth.
MeSH Terms
Action Potentials
Animals
Astacoidea/physiology
Axons/physiology
Electric Conductivity
Muscle Development
Muscles/physiology
Neuromuscular Junction/physiology
Neurotransmitter Agents/metabolism
Synapses/metabolism,physiology
Synaptic Transmission
Chemicals
Neurotransmitter Agents
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Lnenicka G A
Mellon D
References (16)
16 references, click to expand
-
Effect of age on the response of four muscles of the rat to denervation.
Am J Physiol. 1968 May;214(5):1139-46
PMID: 5647190
-
Matching of excitatory and inhibitory inputs to crustacean muscle fibers.
J Neurophysiol. 1971 Jan;34(1):157-70
PMID: 4322251
-
Correlation between nerve terminal size and transmitter release at the neuromuscular junction of the frog.
J Physiol. 1971 Mar;213(3):545-56
PMID: 4323933
-
The development of nerve-muscle junctions in Rana catesbeiana tadpoles.
Dev Biol. 1974 Sep;40(1):129-53
PMID: 4370444
-
Three-dimensional ultrastructure of the crayfish neuromuscular apparatus.
J Cell Biol. 1974 Nov;63(2 Pt 1):599-613
PMID: 4138220
-
Analysis of postural motoneuron activity in crayfish abdomen. II. Coordination by excitatory and inhibitory connections between motoneurons.
J Neurophysiol. 1975 Mar;38(2):332-46
PMID: 165271
-
Synaptic development in the crayfish opener muscle.
J Neurobiol. 1976 Jul;7(4):289-312
PMID: 956815
-
Excitatory synapses of blue crab gastric mill muscles.
Cell Tissue Res. 1977 Feb 9;177(2):145-58
PMID: 837405
-
Transmitter output increases in an identifiable lobster motoneurone with growth of its muscle fibres.
Nature. 1978 Jun 22;273(5664):676-8
PMID: 26880
-
Degenerating nerve products affect innervated muscle fibres.
Nature. 1978 Oct 19;275(5681):652-4
PMID: 703829
-
Development of excitatory innervation in the lobster claw closer muscle.
J Comp Neurol. 1980 Nov 1;194(1):57-70
PMID: 7440800
-
Section of lumbar spinal roots fails to induce synapse formation in contralateral, innervated sartorius muscles of the frog.
Brain Res. 1981 Jan 12;204(2):421-3
PMID: 6970061
-
Motor nerve sprouting.
Annu Rev Neurosci. 1981;4:17-42
PMID: 7013635
-
Remodeling of multiterminal innervation by nerve terminal sprouting in an identifiable lobster motoneuron.
Science. 1981 Jun 26;212(4502):1522-4
PMID: 7233240
-
Changes in electrical properties and quantal current during growth of identified muscle fibres in the crayfish.
J Physiol. 1983 Dec;345:261-84
PMID: 6663501
-
The quantal nature of transmission and spontaneous miniature potentials at the crayfish neuromuscular junction.
J Physiol. 1961 Mar;155:514-29
PMID: 13724753