Mechanism of uptake and retrograde axonal transport of noradrenaline in sympathetic neurons in culture: reserpine-resistant large dense-core vesicles as transport vehicles.
Open Access
- 1 June 1983
- journal article
- research article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 96 (6) , 1538-1547
- https://doi.org/10.1083/jcb.96.6.1538
Abstract
The uptake and retrograde transport of noradrenaline (NA) within the axons of sympathetic neurons was investigated in an in vitro system. Dissociated neurons from the sympathetic ganglia of newborn rats were cultured for 3-6 wk in the absence of non-neuronal cells in a culture dish divided into three chambers. These allowed separate access to the axonal networks and to their cell bodies of origin. [3H]NA (0.5 X 10(-6) M), added to the axon chambers, was taken up by the desmethylimipramine- and cocaine-sensitive neuronal amine uptake mechanisms, and a substantial part was rapidly transported retrogradely along the axons to the nerve cell bodies. This transport was blocked by vinblastine or colchicine. In contrast with the storage of [3H]NA in the axonal varicosities, which was totally prevented by reserpine (a drug that selectively inactivates the uptake of NA into adrenergic storage vesicles), the retrograde transport of [3H]NA was only slightly diminished by reserpine pretreatment. Electron microscopic localization of the NA analogue 5-hydroxydopamine (5-OHDA) indicated that mainly large dense-core vesicles (700-1,200-A diam) are the transport compartment involved. Whereas the majority of small and large vesicles lost their amine dense-core and were resistant to this drug. It, therefore, seems that these vesicles maintained the amine uptake and storage mechanisms characteristic for adrenergic vesicles, but have lost the sensitivity of their amine carrier for reserpine. The retrograde transport of NA and 5-OHDA probably reflects the return of used synaptic vesicle membrane to the cell body in a form that is distinct from the membranous cisternae and prelysosomal structures involved in the retrograde axonal transport of extracellular tracers.This publication has 58 references indexed in Scilit:
- Structural changes after transmitter release at the frog neuromuscular junction.The Journal of cell biology, 1981
- Uptake, intra‐axonal transport and fate of horseradish peroxidase in embryonic spinal neurons of the chickJournal of Comparative Neurology, 1980
- The movement of membranous organelles in axons. Electron microscopic identification of anterogradely and retrogradely transported organelles.The Journal of cell biology, 1980
- Electrogenic transport of biogenic amines in chromaffin granule membrane vesiclesFEBS Letters, 1980
- Reserpine as a competitive and reversible inhibitor of the catecholamine transporter of bovine chromaffin granulesFEBS Letters, 1979
- Persistence of an amine uptake system in cultured rat sympathetic neurons which use acetylcholine as their transmitter.The Journal of cell biology, 1978
- Neurotransmitter synthesis and uptake by isolated sympathetic neurones in microculturesNature, 1977
- Presynaptic α-adrenoceptorsGeneral Pharmacology: The Vascular System, 1976
- On the nature of the adrenergic neuron extragranular amine binding siteJournal Of Neural Transmission-Parkinsons Disease and Dementia Section, 1974
- EVIDENCE FOR RECYCLING OF SYNAPTIC VESICLE MEMBRANE DURING TRANSMITTER RELEASE AT THE FROG NEUROMUSCULAR JUNCTIONThe Journal of cell biology, 1973