The Effect of Inhibiting the Calcium Activated Neutral Protease, on Motor Unit Size after Partial Denervation of the Rat Soleus Muscle
- 1 November 1989
- journal article
- Published by Wiley in European Journal of Neuroscience
- Vol. 1 (6) , 616-625
- https://doi.org/10.1111/j.1460-9568.1989.tb00367.x
Abstract
Rat soleus muscles were partially denervated by removal of the L5 ventral ramus at either 4 - 6 days or 17 - 19 days. Local application of leupeptin, a potent inhibitor of the calcium activated neutral protease to these operated muscles, resulted in a significantly greater maximal tetanic tension and motor unit size, when compared to untreated partially denervated muscles. This was achieved in the 4 - 6 day operated animals by an increased number of terminals and in the 17 - 19 day old animals by increased number of axonal sprouts that maintain contact with muscle fibres. In both groups of operated animals in the leupeptin treated muscles large numbers of motor units were able to maintain or achieve an expanded territory, whilst the size of the largest motor unit did not appear to be increased. It is proposed that leupeptin exerts its effect by inhibiting the degradative action of the neuronal calcium activated neutral protease on the axonal cytoskeleton. Such inhibition may act to prevent or decrease the degradation of cytoskeletal structures in the nerve terminal, and so provide protection for weak terminals at a synapse and growth cones of sprouting axons following partial denervation.Keywords
This publication has 32 references indexed in Scilit:
- Effects of low calcium and inhibition of calcium-activated neutral protease (CANP) on mature nerve terminal structure in the rat sternocostalis muscleDevelopmental Brain Research, 1987
- Effect of low calcium and protease inhibitors on synapse elimination during postnatal development in the rat soleus muscleDevelopmental Brain Research, 1986
- Nerve disperses preexisting acetylcholine receptor clusters prior to induction of receptor accumulation in Xenopus muscle culturesDevelopmental Biology, 1984
- A Calcium‐Activated Protease which Preferentially Degrades the 160‐kDa Component of the Neurofilament TripletEuropean Journal of Biochemistry, 1983
- A calcium‐dependent protease selectively degrading the 160 000 Mr component of neurofilaments is associated with the cytoskeletal preparation of the spinal cord and has an endogenous inhibitory factorFEBS Letters, 1982
- Effect of Ca2+ on the inhibition of calcium‐activated neutral protease by leupeptin, antipain and epoxysuccinate derivativesFEBS Letters, 1981
- Transmitter release from frog motor nerve terminals depends on motor unit sizeNature, 1980
- Protein turnover in muscle: Inhibition of the calcium activated proteinase by mersalyl without inhibition of the rate of protein degradationBiochemical and Biophysical Research Communications, 1980
- A CALCIUM ACTIVATED PROTEASE IN SQUID AXOPLASMJournal of Neurochemistry, 1979
- Leupeptin, a Protease Inhibitor, Decreases Protein Degradation in Normal and Diseased MusclesScience, 1978