Axonal transport: A quantitative study of retained and transported protein fraction in the cat
- 1 January 1981
- journal article
- research article
- Published by Wiley in Journal of Neurobiology
- Vol. 12 (1), 15-26
- https://doi.org/10.1002/neu.480120103
Abstract
The fast axoral transport of proteins was studied in the cat sciatic nerve after injection of [3H] leucine into the spinal ganglion or the ventral horn of the seventh lumbar segment. The amount of transported proteins after ganglion injection was linearly related to the amount of label present at the ganglion. At variable intervals after ganglion or spinal cord injection, the sciatic nerves were sectioned in some experiments. The transport of proteins continued in the peripheral nerve stump in a wavelike manner, but the advancing wave leaves a labeled trail behind. A fraction of this trail corresponds to proteins moving at slower velocities than thevelocity of proteins in the wave front. Another fraction of the trail corresponds to molecules retained by the axons. Each nerve segment of 5 mm in lenth retains 1.5% of the transported proteins, and the profile of retained proteins along the sciatic nerves follows a single exponential function. From the proportion of retained proteins, the concentration of transported proteins at the terminals of branching axons as a function of the branching ratio was estimated. In the case of motor axons innervating the soleus muscle of the cat, the concentration of recently transported proteins at the nerve terminals would be approximately 0.83% of the proteins leaving the spinal cord. This low concentration of transported proteins at the nerve terminals may explain the lability of neuromuscular synapses when axonal transport is decreased or interrupted.This publication has 24 references indexed in Scilit:
- Conduction block and functional denervation caused by Tullidora (Karwinskia humboldtiana)Experimental Neurology, 1979
- Retrograde axonal transport of endogenous protein: differences between motor and sensory axonsJournal of Neurochemistry, 1977
- Initial changes in the neuromuscular synapses of denervated rat diaphragmBrain Research, 1974
- DEVELOPMENT OF THE NEUROMUSCULAR JUNCTIONThe Journal of cell biology, 1972
- TRANSPORT OF MICROTUBULAR PROTEIN IN AXONS OF RETINAL GANGLION CELLSJournal of Neurochemistry, 1971
- SYNTHESIS, MIGRATION AND TURNOVER OF PROTEIN IN RETINAL GANGLION CELLSJournal of Neurochemistry, 1971
- COMPONENTS OF FAST AND SLOW PHASES OF AXOPLASMIC FLOW1Journal of Neurochemistry, 1969
- Somal site of synthesis of fast transported materials in mammalian nerve fibersJournal of Neurobiology, 1969
- FAST AND SLOW COMPONENTS IN AXONAL TRANSPORT OF PROTEINThe Journal of cell biology, 1968
- Axoplasmic transport of labeled proteins in rat ventral motoneuronsExperimental Neurology, 1968